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Development of Reduced Graphene Oxide Based Hybrid Nanostructured Electrodes for Electrochemical Devices Applications : Development of Reduced Graphene Oxide Based Hybrid Nanostructured Electrodes for Electrochemical Devices Applications

호사인 2016년
' Development of Reduced Graphene Oxide Based Hybrid Nanostructured Electrodes for Electrochemical Devices Applications : Development of Reduced Graphene Oxide Based Hybrid Nanostructured Electrodes for Electrochemical Devices Applications' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 응용 물리
  • Catalysts
  • Chemically modified reduced graphene oxide
  • Electrochemical devices
  • Electrochemically reduced graphene oxide
  • Glucose
  • Glucose treated reduced graphene oxide and activated carbon composites
  • Highly hybridized reduced graphene oxide
  • Hydrothermally reduced graphene oxide
  • Ni(OH)2 nanoparticles
  • Pd
  • PdPt
  • fuel cells
  • hydrogen peroxide
  • pt
  • super-capacitor
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
1,284 0

0.0%

' Development of Reduced Graphene Oxide Based Hybrid Nanostructured Electrodes for Electrochemical Devices Applications : Development of Reduced Graphene Oxide Based Hybrid Nanostructured Electrodes for Electrochemical Devices Applications' 의 참고문헌

  • Z. Zhang, L. Xin, K. Sun and W. Li, “Pd–Ni electrocatalysts for efficient ethanol oxidation reaction in alkaline electrolyte”, Int. J. hydrogen energy, vol. 36, pp. 12686-12697, 2011.
  • Z. Yin, S. Wu, X. Zhou, X. Huang, Q. Zhang, F. Boey and H. Zhang, “Electrochemical deposition of ZnO nanorods on transparent reduced graphene oxide electrodes for hybrid solar cells” Small, vol. 6, pp. 307-312, 2010.
  • Z. Yin, Q. He, X. Huang, J. Zhang, S. Wu, P. Chen, G. Lu, P. Chen, Q. Zhang, Q. Yan and H. Zhang, “Real-time DNA detection using Pt nanoparticledecorated reduced graphene oxide field-effect transistors”, Nanoscale, vol. 4, pp. 293-297, 2012.
  • Z. Y. Yang, Y. X. Zhang, L. Jing, Y. F. Zhao, Y. M. Yan and K. N. Sun, “Beanpod-shaped Fe–C–N composite as promising ORR catalyst for fuel cells operated in neutral media”, J. Mater. Chem. A, vol. 2, pp. 2623-2627, 2014.
  • Z. X. Liang, T. S. Zhao and J. B. Xu, “Mechanism study of the ethanol oxidation reaction on palladium in alkaline media”, Electrochim. Acta, vol. 54, pp. 2203-2208, 2009.
  • Z. Wang, X. Zhou, J. Zhang, F. Boey and H. Zhang, “Direct Electrochemical reduction of single-layer graphene oxide and subsequent functionalization with glucose oxidase”, J. Phys. Chem. C, vol. 113 (32), pp. 14071-14075, 2009,
  • Z. S. Wu, D. W. Wang, W. Ren, J. Zhao, G. Zhou, F. Li and H. M. Cheng, “Anchoring hydrous RuO2 on graphene sheets for high-performance electrochemical capacitors ”, Adv. Func. Mater., vol. 20, pp. 3595-3602, 2010.
  • Z. Ji, G. Zhu, X. Shen, H. Zhou, C. Wu and M. Wang, “Reduced graphene oxide supported FePt alloy nanoparticles with high electrocatalytic performance for methanol oxidation”, New J. Chem., vol. 36, pp. 1774-1780, 2012.
  • Z. Huang, H. Zhou, C. Li, F. Zeng, C. Fua and Y. Kuang, “Preparation of well-dispersed PdAu bimetallic nanoparticles on reduced graphene oxide sheets with excellent electrochemical activity for ethanol oxidation in alkaline media”, J. Mater. Chem., vol. 22, pp. 1781-1785, 2012.
  • Z. H. Ni, H. M.Wang and J. Kasim, “Graphene thickness determination using reflection and contrast spectroscopy”, Nano Lett., vol. 7, pp. 2758-2763, 2007.
  • Z. Al-Qodah and R. Shawabkah, “Production and characterization of granular activated carbon from activated sludge”, Brazilian J. Chem. Eng., vol. 26, pp. 127-136, 2009.
  • Y. Zhuo, Y. Q. Chai, R. Yuan, L. Mao, Y. L. Yuan and J. Han, “Glucose oxidase and ferrocene labels immobilized at Au/TiO2 nanocomposites with high load amount and activity for sensitive immunoelectrochemical measurement of ProGRP biomarker”, Biosens. Bioelectron., vol. 26, pp. 3838-3844, 2011.
  • Y. Zhu, W. Cai, R.D. Piner, A. Velamakanni and R.S. Ruoff, “Transparent self-assembled films of reduced graphene oxide platelets”, Appl. Phys. Lett., vol. 95, pp. 103104, 2009.
  • Y. Zhu , M. D. Stoller , W. Cai , A. Velamakanni , R. D. Piner , D. Chen and R. S. Ruoff, “Exfoliation of graphite oxide in propylene carbonate and thermal reduction of the resulting graphene oxide platelets”, ACS Nano, vol. 4, pp.1227-1233, 2010.
  • Y. Zhang, D. Li, X. Tan, B. Zhang, X. Ruan, H. Liu, C. Pan, L. Liao, T. Zhai, Y. Bando, S. Chen, W. Cai and R. S. Ruoff, “High quality graphene sheets from graphene oxide by hot-pressing”, Carbon, vol. 54, pp. 143-148, 2013.
  • Y. Zhai, Y. Dou, D. Zhao, P. F. Fulvio, R.T. Mayes and S. Dai, “Carbon materials for chemical capacitive energy storage”, Adv. Mater., vol. 23, pp. 4828-4850, 2011.
  • Y. Yao and K. Shiu, “Direct electrochemistry of glucose oxidase at carbon nanotube-gold colloid modified electrode with poly(diallyldimethyl ammonium chloride) coating”, Electroanalysis, vol. 20, pp. 1542-1548, 2008.
  • Y. Yang. A. M. Asiri. Z. Tang, D. Du, Y. Lin, “Graphene based materials for biomedical applications”, MaterialsToday, vol. 16, pp. 365-373, 2013.
  • Y. Xu, H. Bai, G. Lu, C. Li and G. Shi, “Flexible graphene films via the filtration of water-soluble noncovalent functionalized graphene sheets”, J. Am. Chem. Soc., vol. 130, pp. 5856-5857, 2008.
  • Y. Wang, L. Liu, M. Li, S. Xu and F. Gao, “Multifunctional carbon nanotubes for direct electrochemistry of glucose oxidase and glucose bioassay”, Biosens. Bioelectron., vol. 30, pp. 107-111, 2011.
  • Y. Wang, J. Liu, L. Liu and D. D. Sun, “High-quality reduced graphene oxide-nanocrystalline platinum hybrid materials prepared by simultaneous coreduction of graphene oxide and chloroplatinic acid”, Nano Res. Lett., vol. 6, pp. 241-248, 2011.
  • Y. Shao, J. Wang, H. Wu, J. Liu, I.A. Aksay and Y. Lin, “Graphene based electrochemical sensors and biosensors: a review”, Electroanalysis, vol. 22, pp. 1027-1036, 2010.
  • Y. R. Kim, S. Bong, Y. J. Kang, Y. Yang, R. K. Mahajan, J. S. Kim and H. Kim, “Electrochemical detection of dopamine in the presence of ascorbic acid using graphene modified electrodes”, Biosens. Bioelectron., vol. 25, pp. 2366- 2369, 2010.
  • Y. N. Jeong, M. Y. Choi and H. C. Choi, “Preparation of Pt- and Pddecorated CNTs by DCC-activated amidation and investigation of their electrocatalytic activities”, Electrochim. Acta, vol. 60, pp. 78-84, 2012.
  • Y. J. Lee, D. J. Park, J. Y. Park and Y. Kim, “Fabrication and optimization of a nanoporous platinum electrode and a non-enzymatic glucose micro-sensor on silicon”, Sensors, vol. 8, pp. 6154-6164, 2008.
  • Y. J. Lee, D. J. Park and J. Y. Park, “Fully packaged nonenzymatic glucose microsensors with nanoporous platinum electrodes for anti-fouling”, IEEE sensors J., vol. 8, pp. 1922-1927, 2008.
  • Y. J. Lee, C. Oh, J. Y. Park and Y. Kim, Fabrication and Characterization of Macroporous Gold Hybrid Sensing Electrodes With Electroplated Platinum Nanoparticles, IEEE Trans. Nanaotech., vol. 10, pp. 1298-1305, 2011.
  • Y. Ikariyama, S. Yamauchi, T. Yukiashi and H. Ushioda, “One step fabrication of microbiosensor prepared by the codeposition of enzyme and platinum particles”, Anal. Lett., vol. 20, pp. 1791-1801, 1987.
  • Y. Hernandez, V. Nicolosi, M. Lotya, F.M. Blighe, Z. Sun, S. De, I. T. Mcgovern, B. Holland, M. Byrne, Y. K. Gun’Ko, J. J. Boland, P. Niraj, G. Duesberg, S. Krishnamurthy, R. Goodhue, J. Hutchison, V. Scardaci, A. C. Ferrari and J. N. Coleman, “High-yield production of graphene by liquidphase exfoliation of graphite”, Nat. Nanotech., vol. 3, pp. 563-568, 2008.
  • Y. H. Zhang, Y. B. Chen, K. G. Zhou, C. H. Liu, J. Zeng, H. L. Zhang and Y. Peng, “Improving gas sensing properties of graphene by introducing dopants and defects: a first-principles study”, Nanotechnol., vol. 20, pp. 185504, 2009.
  • Y. Chen, X. Zhang, D. Zhang, P. Yu and Y. Ma, “High performance supercapacitors based on reduced graphene oxide in aqueous and ionic liquid electrolytes”, Carbon, vol. 49, pp. 573-580, 2011.
  • X. Yang, Q. Yang, J. Xu and C. S. Lee, “Bimetallic PtPd nanoparticles on nafion–graphene film as catalyst for ethanol electro-oxidation” J. Mater. Chem., vol. 22, pp. 8057-8062, 2012.
  • X. Wang, L. J. Zhi and K. Mullen, “Transparent, conductive graphene electrodes for dye-sensitized solar cells”, Nano Lett., vol. 8, pp. 323-327, 2008.
  • X. Sun, G. Wang, J. Y. Hwang and J. Lian, “Porous nickel oxide nano-sheets for high performance pseudocapacitance materials”, J. Mater. Chem., vol. 21, pp. 16581-16588, 2011.
  • X. Sun and Y. Li, “Colloidal carbon spheres and their core/shell structures with noble-metal nanoparticles”, Angew. Chem. Int. Edi., vol. 43, pp. 597-60, 2004.
  • X. M. Chen, Z. X. Cai, Z. Y. Huang, M. Oyama, Y. Q. Jiang and X. Chen, “Ultrafine palladium nanoparticles grown on graphene nanosheets for enhanced electrochemical sensing of hydrogen peroxide”, Electrochim acta, vol. 97, pp. 398-403, 2013.
  • X. M. Chen, Z. J. Lin, D. J. Chen, T. T. Jia, Z. M. Cai, X. R. Wang, X. Chen, G. N. Chen and M. Oyama, “Nonenzymatic amperometric sensing of glucose by using palladium nanoparticles supported on functional carbon nanotubes”, Biosens. Bioelectron., vol. 25, pp. 1803-1808, 2010.
  • X. Kang, Z. Mai, X. Zou, P. Cai, and J. Mo, “A sensitive nonenzymatic glucose sensor in alkaline media with a copper nanocluster/multiwall carbon nanotube-modified glassy carbon electrode”, Anal Biochem., vol. 363, pp. 143-150, 2007.
  • X. Kang, J. Wang, H. Wu, J. Liu, I. A. Aksay and Y. Lin, “A graphene-based electrochemical sensor for sensitive detection of paracetamol”, Talanta, vol. 81, pp. 754-759, 2010.
  • X. Huang, Z. Y. Zeng, Z. X. Fan, J. Q. Liu and H. Zhang, “Graphene-based electrodes”, Adv. Mater., vol. 24, pp. 5979-6004, 2012.
  • X. Chen, G. Wu, J. Chen, X. Chen, Z. Xie and X. Wang, “Synthesis of "clean" and well-dispersive Pd nanoparticles with excellent electrocatalytic property on graphene oxide”, J. Am. Chem. Soc., vol. 133, pp. 3693-3695, 2011.
  • X. C. Song, L. Wang, H.Y. Yin, “A novel non-enzymatic glucose sensor based on Ag nanoparticles electrodeposited on polyaniline films”, Curr. Nanosci., vol. 8, pp. 945-948, 2012.
  • X. B. Yan, X. J. Chen, B. K. Tay and K. A. Khor, “Transparent and flexible glucose biosensor via layer-by-layer assembly of multi-wall carbon nanotubes and glucose oxidase”, Electrochem. Commun., vol. 9, pp.1269-1275, 2007.
  • W. Zhou, J. Zhu, C. Cheng, J. Liu, H. Yang, C. Cong, C. Guan, X. Jia, H. J. Fan, Q. Yan, C. M. Li and T. Yu, “A general strategy toward graphene@metal oxide core–shell nanostructures for high-performance lithium storage”, Energy Environ. Sci., vol. 4, pp. 4954-4961, 2011.
  • W. Yang, K. R. Ratinac, S. R. Ringer, P. Thordarson, J. J. Gooding and F. Braet, “Carbon nanomaterials in biosensors: should you use nanotubes or graphene”, Angew. Chem. Int. Edi. vol. 49, pp. 2114-2138, 2010.
  • W. Yang, E. Widenkvist, U. Jansson and H. Grennberg, “Stirring-induced aggregation of graphene in suspension”, New J. Chem., vol. 35, pp. 780-783, 2011.
  • W. Y. Lee, K. S. Lee, T. H. Kim, M. C. Shin and J. K. Park, “Microfabricated conductometric urea biosensor based on sol-gel immobilized urease”, Electroanalysis, vol. 12, pp. 78-82, 2000.
  • W. Sun, R. Zheng and X. Chen, “Symmetric redox supercapacitor based on micro-fabrication with three-dimensional polypyrrole electrodes”, J. Power Sources, vol. 195, pp. 7120-7125, 2010.
  • W. S. Hummers and R. E. Offeman, “Preparation of graphitic oxide”, J. Am. Chem. Soc., vol. 80, pp. 1339-1339, 1958.
  • W. Limbut, P, Kanatharana, B. Mattiasson, P. Asawatreratanakul and P. Thavarungkul, “A comparative study of capacitive immunosensors based on self-assembled monolayers formed from thiourea, thioctic acid, and 3- mercaptopropionic acid”, Biosens. Bioelectron., vol. 22, pp. 233-240, 2006.
  • W. Liang and Y. Zhuobin, “Direct electrochemistry of glucose oxidase at a gold electrode modified with single-wall carbon nanotubes”, Sensors, vol. 3, pp. 544-554, 2003.
  • W. J. Zhou, B. Zhou, W. Z. Li, S. Q. Song, G. Q. Sun, Q. Xin, S. Douvartzides, M. Goula and P. Tsiakaras, “Performance comparison of lowtemperature direct alcohol fuel cells with different anode catalysts”, J. Power Source, vol. 126, pp. 16-22, 2004.
  • W. J. Guan, Y. Li, Y. Q. Chen, X. B. Zhang and G. Q. Hu, Glucose biosensor based on multiwall carbon nanotubes and screen printed carbon electrodes. Biosens. Bioelectron., vol. 21, pp. 508-512, 2005.
  • W. Gao, “Graphite oxide: Structure, reduction and applications”, Ph.D Thesis, Rice University, page 55-82, 2012.
  • V. Singh, D. Joung, L. Zhai, S. Das, S. I. Khondaker and S. Seal, “Graphene based materials: Past, present and future”, Prog. Mater. Sci., vol. 56, pp. 1178-1271, 2011.
  • V. A. Kumary, T. E. M. Nancy, J. Divya, and K. Sreevalsan, “Nonenzymatic glucose sensor: glassy carbon electrode modified with graphene-nickel/nickel oxide composite”, Int. J. Electrochem. Sci., vol. 8, pp. 2220-2228, 2013.
  • U. Khan, I. O’Connor, Y.K. Gun’ko and J. N. Coleman, “The preparation of hybrid films of carbon nanotubes and nano-graphite/graphene with excellent mechanical and electrical properties”, Carbon, vol. 48, pp. 2825-2830, 2010.
  • T. Yang and A. Lua, “Characteristics of activated carbons prepared from pistachio-nut shells by physical activation”, J. Collo. Inter. Sci., vol. 267, pp. 408-417, 2003.
  • T. Wei, G. Luo, Z. Fan, C. Zheng, J. Yan, C. Yao, W. Li and C. Zhang, “Preparation of graphene nanosheet/polymer composites using in situ reduction–extractive dispersion”, Carbon, vol. 47, pp. 2296-2299, 2009.
  • T. V. Khai, H. G. Na , D. S. Kwak , Y. J. Kwon , H. Ham, K. B. Shim and H. W. Kim, “Significant enhancement of blue emission and electrical conductivity of N-doped graphene”, J. Mater. Chem, vol. 22, pp. 17992- 18003, 2012.
  • T. Szabo, O. Berkesi and I. Dekany, “DRIFT study of deuterium-exchanged graphite oxide”, Carbon, vol. 43, pp. 3186-3189, 2005.
  • T. S. Sreeprasad, M. M. Shihabudheen, K. P. Lisha and T. Pradeep, “Reduced graphene oxide-metal/metal oxide composites: facile synthesis and application in water purification”, J. Haz. Mater., vol. 186, pp. 921-931, 2011.
  • T. O. Wehling, K. S. Novos elov, S. V. Morozov, E. E. Vdovin, M. I. Katsnelson, A. K. Geim and A. I. Lichtenstein, “Molecular doping of graphene”, Nano Lett., vol. 8, pp. 173-177, 2008.
  • T. Kong, Y. Chen, Y. Ye, K. Zhang, Z. Wang and X. Wang, “An amperometric glucose biosensor based on the immobilization of glucose oxidase on the ZnO nanotubes”, Sens. Actuat. B, vol. 138, pp. 344-350, 2009.
  • T. Hennebel, S. De Corte, W. Verstraete W, N. Boon, “Microbial production and environmental applications of Pd nanoparticles for treatment of halogenated compounds”, Curr. Opin. Biotechnol. vol. 23, pp. 555-561, 2012.
  • T. Bugg, “Introduction to enzyme and coenzyme chemistry” 2004, GB: Blackwell Publishing.
  • S. Zhang, Y. Shao, G. Yin and Y. Lin, “Electrostatic self-assembly of a Ptaround- Au nanocomposite with high activity towards formic acid oxidation”, Angew. Chem. Int. Edi., vol. 49, pp. 2211-2214, 2010.
  • S. Zhang, N. Wang, H. Yu, Y. Niu and C. Sun, Covalent attachment of glucose oxidase to an Au electrode modified with gold nanoparticles for use as glucose biosensor, Bioelectrochem. vol. 67, pp. 15-22, 2005.
  • S. Yang, X. Wu, C. Chen, H. Dong, W. Hu and X. Wang, “Spherical α- Ni(OH)2 nanoarchitecture grown on graphene as advanced electrochemical pseudocapacitor materials”, Chem. Commun., vol. 48, pp. 2773-2775, 2012.
  • S. X. Guo, Y. Liu, A. M. Bond, J. Zhang, P. E. Karthik, I. Maheshwaran, S. S. Kumar and K. L. N. Phani, “Facile electrochemical co-deposition of a graphene–cobalt nanocomposite for highly efficient water oxidation in alkaline media: direct detection of underlying electron transfer reactions under catalytic turnover conditions”, Phy. Chem. Chem. Phy. vol. 16, pp. 19035-19045, 2014.
  • S. W Lee, J. Kim, S. Chen, P. T. Hammond and Y. Shao-Horn, “Carbon nanotube/manganese oxide ultrathin film electrodes for electrochemical capacitors”, ACS Nano, vol. 4, pp. 3889-3896, 2010.
  • S. T. Farrell and C. B. Breslin, Electrochim. Acta, “Oxidation and photoinduced oxidation of glucose at a polyaniline film modified by copper particles”, vol. 49, pp. 4497-4503, 2004.
  • S. Some, Y. Xu, Y. Kim, Y. Yoon, H. Qin, A. Kulkarni, T. Kim and H. Lee, “Highly sensitive and selective gas sensor using hydrophilic and hydrophobic graphenes”, Sci. Rep., vol. 3, pp. 1868-1876, 2013.
  • S. S. Gupta and J. Datta, “Electrode kinetics of ethanol oxidation on novel CuNi alloy supported catalysts synthesized from PTFE suspension”, J. Power Sources, vol. 145, pp. 124-132, 2005.
  • S. Pei and H. M. Cheng, “The reduction of graphene oxide”, Carbon, vol. 50, pp. 3210-3228, 2012.
  • S. Park, J. An, J. R. Potts, A. Velamakanni, S. Murali and R. S. Ruoff, “Hydrazine-reduction of graphite- and graphene oxide”, Carbon, vol. 49, pp. 3019-3023, 2011.
  • S. Palanisamy, A.T. E. Vilian and Shen-Ming Chen, “Direct electrochemistry of glucose oxidase at reduced graphene oxide/zinc oxide composite modified electrode for glucose sensor”, Int. J. Electrochem. Sci., vol. 7, pp. 2153-2163, 2012.
  • S. Kim, S. Zhou, Y. Hu, M. Acik, Y. J. Chabal, C. Berger, W. D. Heer, A. Bongiorno and E. Riedo, “Room-temperature metastability of multilayer graphene oxide films”, Nat. Mater., vol. 11, pp. 544-549, 2012.
  • S. J. An, Y. Zhu, S. H. Lee, M. D. Stoller, T. Emilsson, S. Park, A. Velamakanni, J. An and R. S. Ruoff, “Thin film fabrication and simultaneous anodic reduction of deposited graphene oxide platelets by electrophoretic deposition”, J. Phys. Chem. Let.t, vol. 1 (8), pp. 1259-1263, 2010.
  • S. He, B. Song, D. Li, C. Zhu, W. Qi, Y. Wen, L. Wang, S. Song, H. Fang and C. Fan, “A graphene nanoprobe for rapid, sensitive, and multicolor fluorescent DNA analysis”, Adv. Funct. Mater., vol. 20, pp. 453-459, 2010.
  • S. Chen, J. Zhu, X. Wu, Q. Han, and X. Wang, “Graphene oxide−MnO2 nanocomposites for supercapacitors”, ACS Nano, vol. 4, pp. 2822-2830, 2010.
  • S. Caron, R. W. Dugger, S. G. Ruggeri, J. A. Ragan and D. H. B. Ripin, “Large-scale oxidations in the pharmaceutical industry”, Chem. Rev., vol. 106, pp. 2943-2989, 2006.
  • S. Badhulika, R. K. Paul, Rajesh, T. Terse and A. Mulchandani, “Nonenzymatic glucose sensor based on platinum nanoflowers decorated multiwalled carbon nanotubes-graphene hybrid electrode”, Electroanalysis, vol. 26, pp. 103-108, 2014.
  • S. A. Miscoria, J. Desbrieres, G. D. Barrera, P. Labb and G. A. Rivas, “Glucose biosensor based on the layer-by-layer self-assembling of glucose oxidase and chitosan derivatives on a thiolated gold surface”, Anal. Chim. Acta, vol. 578, pp. 137-144, 2006.
  • R. N. Singh and A. Singh, “Electrocatalytic activity of binary and ternary composite films of Pd, MWCNT and Ni, Part II: Methanol electroxidation in 1 M KOH”, Int. J. Hydrogen Energy, vol. 34 pp. 2052-2057, 2009.
  • R. N. Singh and A. S. Anindita, “Electrocatalytic activity of binary and ternary composite films of Pd, MWCNT, and Ni for ethanol electro-oxidation in alkaline solutions”, Carbon, vol. 47, pp. 271-278, 2009.
  • R. H. Hesas, A. A. Niya, W. M. Daud, and J.N. Sahu, Preparation and characteerization of activated carbon from apple waste by microwaveassisted phosphoric acid activation: Application in methylene blue adsorption, BioResources, vol. 8, pp. 2950-2966, 2013.
  • R. Gifford, J. J. Kehoe, S. L. Barnes, B. A. Kornilayev, M. A. Afterman and G. S. Wilson, “Protein interactions with subcutaneously implanted biosensors”, Biomaterials, vol. 27, pp. 2587-2598, 2006.
  • R. Flyunt, W. Knolle, A. Kahnt, S. Eigler, A. Lotnyk, T. H upl, A. Prager, D. Guldi, and B. Abel, “Efficient route to high-quality graphene materials: kinetically controlled electron beam induced reduction of graphene oxide in aqueous dispersion”, Am. J. Nano Res. App. vol. 2, pp. 9-18, 2014.
  • Q. Wang, X. Cui, W. Guan, X. Zhang, C. Liu, T. Xue, H. Wang and W. Zheng, “A nanoflower shaped gold-palladium alloy on graphene oxide nanosheets with exceptional activity for electrochemical oxidation of ethanol”, Microchim Acta, vol. 181, pp. 373-380, 2014.
  • Q. Wang, X. Cui, Ji. Chen, X. Zheng, C. Liu, T. Xue, H. Wang, Z. Jin, L. Qiao and W. Zheng, “Well-dispersed palladium nanoparticles on graphene oxide as a non-enzymatic glucose sensor”, RSC Adv., vol. 2, pp. 6245-6249, 2012.
  • Q. Liu, X. Lu, J. Li, X. Yao and J. H. Li, “Direct electrochemistry of glucose oxidase and electrochemical biosensing of glucose on quantum dots/carbon nanotubes electrodes”, Biosens. Bioelectron. vol. 22, pp. 3203-3209, 2007.
  • Q. Cheng, J. Tang, N. Shinya and L. C. Qin, “Polyaniline modified graphene and carbon nanotube composite electrode for asymmetric supercapacitors of high energy density”, J. Power Sources, vol. 241, pp. 423-428, 2013.
  • P. Wu, Q. Shao, Y. Hu, J. Jin, Y. Yin, H. Zhang and C. Cai, “Direct electrochemistry of glucose oxidase assembled on graphene and application to glucose detection”, Electrochim. Acta, vol. 55, pp. 8606-8614, 2010.
  • P. Santhosh, K. M. Manesh, S. Uthayakumar, S. Komathi, A. I. Gopalan and K. P. Lee, “Fabrication of enzymatic glucose biosensor based on palladium nanoparticles dispersed onto poly(3,4-ethylenedioxythiophene) nanofibers”, Bioelectrochemistry, vol. 75, pp. 61-66, 2009.
  • O. K. Park, Y. M. Choi, J. Y. Hwang, C. M. Yang, T. W. Kim, N. H. You, H. Y. Koo, J. H. Lee, B. C. Ku and M. Goh, “Defect healing of reduced graphene oxide via intramolecular cross-dehydrogenative coupling”, Nanotech., vol. 24, pp. 185604, 2013.
  • O. Akhavan, E. Ghaderi, S. Aghayee, Y. Fereydooni and A. Talebi, “The use of a glucose-reduced graphene oxide suspension for photothermal cancer therapy”, J. Mater. Chem., vol. 22, pp. 13773-13781, 2012.
  • N. V Kulagina and A. C. Michael, “Monitoring Hydrogen Peroxide in the Extracellular Space of the Brain with Amperometric Microsensors”, Anal. Chem., vol. 75, pp. 4875-4881, 2003.
  • N. Ruecha, R. Rangkupan, N. Rodthongkum, and O. Chailapakul, “Novel paper-based cholesterol biosensor using graphene/polyvinylpyrrolidone/ polyaniline nano composite”, Biosens. Bioelectron. vol. 52, pp. 13-19, 2014.
  • N. I. Kovtyukhova, P. J. Ollivier, B. R. Martin, T. E. Mallouk, S. A. Chizhik, E. V. Buzaneva and A. D. Gorchinskiy, “Layer-by-layer assembly of ultrathin composite films from micron-sized graphite oxide sheets and polycations”, Chem. Mater., vol. 11, pp. 771-778, 1199.
  • N. Cheng, H. Wang, X. Li, X. Yang and L. Zhu, “Amperometric glucose biosensor based on integration of glucose oxidase with palladium nanoparticles/reduced graphene oxide nanocomposite”, Am. J. anal. Chem., vol. 3, pp. 312-319, 2012.
  • M. Zhou, Y. Wang, Y. Zhai, J. Zhai, W. Ren, F. Wang and S. dong, “Controlled synthesis of large-area and patterned electrochemically reduced graphene oxide films”, Chem. Euro J, vol. 15, pp. 6116-6120, 2009.
  • M. Zhou, Y. M. Zhai, and S. J. Dong, “Electrochemical sensing and biosensing platform based on chemically reduced graphene oxide”, Anal. Chem., vol. 81(14), pp. 5603-5613, 2009.
  • M. Y. Elahi, A. A. Khodadadi and Y. Mortazavi, “A glucose biosensor based on glucose oxidase immobilized on ZnO/Cu2O graphene oxide nanocomposite electrode”, J. Electrochem. Soc., vol. 161, pp. B81-B87, 2014.
  • M. S. Goh and M. Pumera. “Single-, few-, and multilayer graphene not exhibiting significant advantages over graphite microparticles in electroanalysis”, Anal. Chem., vol. 82, pp. 8367-8370, 2010.
  • M. Oyama, X. chen and X. Chen, “Recent nanoarchitectures in metal nanoparticle graphene nano composites modified electrodes for electroanalysis”, Anal. Sci. vol. 30, pp. 529-537, 2014.
  • M. M. Rahman, A. Umar and K. Sawada, “Development of amperometric glucose biosensor based on glucose oxidase co-immobilized with multiwalled carbon nanotubes at low potential”, Sens. Actuat. B, vol. 137, pp. 327- 333. 2009.
  • M. H. Yang, B. G. Choi, H. Park, T. J. Park, W. H. Hong and S.Y. Lee, “Directed Self-Assembly of Gold Nanoparticles on Graphene-Ionic Liquid Hybrid for Enhancing Electrocatalytic Activity”, Electroanalysis, vol. 23, pp. 850-857, 2011.
  • M. Grden, J. Kotowski and A. Czerwinski, “Study of hydrogen electrosorption in Pd-Ni alloys by the quartz crystal microbalance”, J. Solid State Electrochem., vol. 7, pp. 43-48, 2002.
  • M. F. M. Choi, “Progress in enzyme-based biosensors using optical transducers”, Microchim. Acta, vol. 148, pp. 107-132, 2004.
  • M. F. Hossain, M. Heo, J. H. Shin and J. Y. Park, “An electrochemical enzymatic biosensor based on Au/FGs/solgel-GOx composite/nafion”, Int. J. Electrochem. Sci., vol. 10, pp. 6803-6819, 2015.
  • M. F. Hossain, J. Yin and J. Y. Park, “Fabrication and characterization of reduced graphene oxide modified nickel hydroxide electrode for energy storage applications”, Jpn. J. App. Phys., vol. 53, pp. 08NC02, 2014.
  • M. F. Hossain and J. Y. Park, “Reduced graphene oxide sheets with added Pt- Pd alloy nanoparticles as a good electro-catalyst for ethanol oxidation”, Int. J. Electrochem. Sci., vol. 10, pp. 6213-6226, 2015.
  • M. F. Hossain and J. Y. Park, “Palladium nanoparticles on electrochemically reduced chemically modified graphene oxide for non-enzymatic bimolecular sensing”, RSC Adv., vol. 3, pp. 16109-16115 2013.
  • M. F. Hossain and J. Y. Park, “An enzymatic hybrid electrode platform based on chemically modified reduced graphene oxide decorated with palladium and platinum alloy nanoparticles for biosensing applications”, J. Electrochem. Soc., vol. 162, pp. B185-B192, 2015.
  • M. F. Hossain and J. Y. Park, “Amperometric glucose biosensor based on ptpd nanoparticles supported by reduced graphene oxide and integrated with glucose oxidase”, Electroanalysis, vol. 26, pp. 940-951, 2014.
  • M. Etesami and N. Mohamed, “Catalytic application of gold nanoparticles electrodeposited by fast scan cyclic voltammetry to glycerol electroxidation in alkaline electrolyte”, Int. J. Electrochem. Sci., vol. 6, pp. 4676-4689, 2011.
  • M. C. Oliveira, R. Rego, L. S. Fernandes and P. B. Tavares, “Evaluation of the catalytic activity of Pd–Ag alloys on ethanol oxidation and oxygen reduction reactions in alkaline medium”, J. Power Sources, vol. 196, pp. 6092-6098, 2011.
  • M. B. Sassin, A. N. Mansour, K. A. Pettigrew, D. R. Rolison and J. W. Long, “Electroless deposition of conformal nanoscale iron oxide on carbon nanoarchitectures for electrochemical charge storage”, ACS Nano, vol. 4, pp. 4505-4514, 2010.
  • M. Ammam and E. B. Easton, “High-performance glucose sensor based on glucose oxidase encapsulated in newsynthesized platinum nanoparticles supported on carbon vulcan/nafion composite deposited on glassy carbon”, Sens. Actuat. B, vol. 155, pp. 340-346, 2011.
  • L.W. Zhang, H. B. Fu and Y. F. Zhu, “Efficient TiO2 photocatalysts from surface hybridization of TiO2 particles with graphite-like carbon”, Adv. Funct. Mater., vol. 18, pp. 2180-2189, 2008.
  • L. Zhang, L. Ji, P.A. Glans, Y. Zhang, J. Zhu and J. Guo, “Electronic structure and chemical bonding of a graphene oxide–sulfur nanocomposite for use in superior performance lithium–sulfur cells”, Phys. Chem. Chem. Phys., vol. 14, pp. 13670-13675, 2012.
  • L. Xu, Y. Zhu, L. Tang, X. Yang and C. Li, “Dendrimer-encapsulated Pt nanoparticles/polyaniline nanofibers for glucose detection”. J. App. Polym. Sci., vol. 109, pp. 1802-1807, 2008.
  • L. Wang, X. M. He, W. T. Sun, J. W. Guo, J. J. Li, J. Gao and C. Y. Jiang, “Nano-structured phosphorus composite as high-capacity anode materials for lithium batteries”, Angew. Chem. Int. Ed., vol. 51, pp. 9034-9037, 2012.
  • L. Wang, H. Zhu, H. Hou, Z. Zhang, X. Xiao and Y. Song, “A novel hydrogen peroxide sensor based on Ag nanoparticles electrodeposited on chitosan-graphene oxide/cysteamine-modified gold electrode”, J. Solid State Electrochem., vol. 16, pp. 1693-1700, 2012.
  • L. Qiang, S. Vaddiraju, D. Patel and F. Papadimitrakopoulos, “Edge-plane microwire electrodes for highly sensitive H2O2 and glucose detection”, Biosens. Bioelectron., vol. 26, pp. 3755-3760, 2011.
  • L. M. Miller, C. C. Ho, P. C. Shafer, P. K. Wright, J. W. Evans and R. Ramesh, “Integration of a low frequency, tunable MEMS piezoelectric energy harvester and a thick film micro capacitor as a power supply system for wireless sensor nodes”, Proc. 30th IEEE ECCE, pp. 2627-2634, 2009.
  • L. L. Li, K. P. Liu, G. H. Yang, C. M. Wang, J. R. Zhang and J. J. Zhu, Fabrication of graphene–quantum dots composites for sensitive electrogenerated chemiluminescence immunosensing, Adv. Funct. Mater., vol. 21, pp. 869-878, 2010.
  • L. Komsiyska and G. Staikov, “Electrocrystallization of Au nanoparticles on glassy carbon from HClO4 solution containing [AuCl4]−, Electrochim. Acta, vol. 54, pp. 168-172, 2008.
  • L. J. Cote, J. Kim, V. C. Tung, J. Luo, F. Kim and J. Huang, “Graphene oxide as surfactant sheets” Pure Appl. Chem., vol. 83, pp. 95-110. 2011.
  • L. F. Dong, R. R. S. Gari, Z. Li, M. M. Craig and S. F. Hou, “Graphenesupported platinum and platinum–ruthenium nanoparticles with high electrocatalytic activity for methanol and ethanol oxidation”, Carbon, vol. 48, pp. 781-787, 2010.
  • L. Chen, Y. Tang, K. Wang, C. Liu and S. Luo, “Direct electrodeposition of reduced graphene oxide on glassy carbon electrode and its electrochemical application”, Electrochem. Comm., vol. 13, pp. 133-137, 2011.
  • L. Chen, Y. Hernandez, X. Feng and K. M ullen, “From nanographene and graphene nanoribbons to graphene sheets: Chemical synthesis”, Angew. Chem. Int. Ed., vol. 51, pp. 7640-7654, 2012.
  • L. B. Luo, S. H. Yu, H. S. Qian, and T. Zhou, “Large-scale fabrication of flexible silver/cross-linked poly(vinyl alcohol) coaxial nanocables by a facile solution approach”, J. Am. Chem. Soc., vol. 127, pp. 2822-2823, 2005.
  • K. Wang, Q. Liu, Q.M. Guan, J. Wu, H. N. Li and J. J. Yan, “Enhanced direct electrochemistry of glucose oxidase and biosensing for glucose via synergy effect of graphene and CdS nanocrystals”, Biosens. Bioelectron., vol. 26, pp. 2252-2657, 2011.
  • K. V. Emtsev, A. Bostwick, K. Horn, J. Jobst, G. L. Kellogg, L. Ley, J. L. McChesney, T. Ohta, S. A. Reshanov, J. Rohrl, E. Rotenberg, A. K. Schmid, D. Waldmann, H. B. Weber and T. Seyller, “Towards wafer-size graphene layers by atmospheric pressure graphitization of silicon carbide”, Nat. Mater., vol. 8, pp. 203-207, 2009.
  • K. U. Hasan, M. H. Asif, M.U. Hassan, M.O. Sandberg, O. Nur, M. Willander,S. Fagerholm, P. Str lfors, A miniature graphene-based biosensor for intracellular glucose measurements, Electrochim. Acta, vol. 174, pp. 574- 580, 2015.
  • K. Tian, S. Alex, G. Siegel, A. Tiwari, “Enzymatic glucose sensor based on Au nanoparticle and plant-like ZnO film modified electrode”, Mater. Sci. Eng. C, vol. 46, pp. 548-552, 2015.
  • K. Tadanaga, Y. Furukawa, A. Hayashi and M. Tatsumisago, “Direct ethanol fuel cell using hydrotalcite clay as a hydroxide ion conductive electrolyte” Adv. Mater., vol. 22, pp. 4401-4404, 2010.
  • K. S. Kim, Y. Zhao, H. Jang, S. Y. Lee, J. M. Kim, K. S. Kim, J. H. Ahn, P. Kim, J. Y. Choi and B. H. Hong, “Large-scale pattern growth of graphene films for stretchable transparent electrodes”, Nature, vol. 457(7230), pp. 706- 710, 2009.
  • K. P. Loh, Q. Bao, P. K. Ang and J. Yang, “The chemistry of graphene”, J. Mater. Chem., vol. 20, pp. 2277-2289, 2010.
  • K. Naoi and P. Simon, “New materials and new configurations for advanced electrochemical capacitors”, Electrochem. Soc. Inter. Spring, vol. 17, pp. 34- 37, 2008.
  • K. J. Cash and H. A. Clark, “Nanosensors and nanomaterials for monitoring glucose in diabetes”, Trend Mol. Med., vol. 16, pp. 584-593, 2010.
  • K. Habermuller, M. Mosbach and W. Schuhmann “Electron-transfer mechanism in amperometric biosensors”, Fresenius J. Anal. Chem., vol. 366, pp. 566-568, 2000.
  • K. Gong, Y. Yan, M. Zhang, L. Su, S. Xiong and L. Mao, “Electrochemistry and electroanalytical applications of carbon nanotubes: A Review”, Anal. Sci., vol. 21, pp. 1383-1393, 2005.
  • K. Balasubramanian and M. Burghard “Biosensors based on carbon nanotubes”, Anal. Bioanal. Chem., vol. 385, pp. 452-468, 2006.
  • J. Zhang, K. Sasaki, E. Sutter and R. R. Adzic, “Stabilization of platinum oxygen-reduction electrocatalysts using gold clusters.”, Science, vol. 315, pp. 220-222, 2007.
  • J. Zhang, C. Yang, C. Chen and X. Yang, Determination of nitrite and glucose in water and human urine with light-up chromogenic response based on the expeditious oxidation of 3,3',5,5'-tetramethylbenzidine by peroxynitrous acid, Analyst, vol. 138, pp. 2398-2404, 2013.
  • J. Yin, S. Shan, M. S. Ng, L. Yang, D. Mott, W. Fang, N. Kang, J. Luo and C. J. Zhong, “Catalytic and electrocatalytic oxidation of ethanol over palladium based nanoalloy catalysts”, Langmuir, vol. 29, pp. 9249-9258, 2013.
  • J. Yang, S. Deng, J. Lei, H. Ju and S. Gunasekaran, “Electrochemical synthesis of reduced graphene sheet–AuPd alloy nanoparticle composites for enzymatic biosensing”, Biosens. Bioelectron., vol. 29, pp. 159-166, 2011.
  • J. Xu, K. Wang, S. Zu, B. Han and Z. Wei, “Hierarchical nanocomposites of polyaniline nanowire arrays on graphene oxide sheets with synergistic effect for energy storage”, ACS Nano, vol. 4, pp. 5019-5026, 2010.
  • J. Wang , “Electrochemical glucose biosensors”, ACS, Chem. Rev., vol. 108, pp. 814-825, 2008.
  • J. W. Lang, L. B. Kong, M. Liu, Y. C. Luo and L. Kang, “Asymmetric supercapacitors based on stabilized alpha-Ni(OH)2 and activated carbon”, J. Solid-State Electrochem., vol. 14, pp. 1533-1539, 2010.
  • J. Shi, T. G. Cha, J. C. Claussen, A. R. Diggs, J. H. Choi and D. M. Porterfield, “Microbiosensors based on DNA modified single-walled carbon nanotube and Pt black nanocomposites”, Analyst, vol. 136 pp. 4916-4924, 2011.
  • J. Shi, H. Zhang, A. Snyder, M. X. Wang, J. Xie, D. M. Porterfield and L. A. Stanciu, “An aqueous media based approach for the preparation of a biosensor platform composed of graphene oxide and Pt-black”, Biosens. Bioelectron., vol. 38, pp. 314-320, 2012.
  • J. Shi, E. S. McLamore, D. Jaroch, J. C. Claussen, J. L. Rickus and D. M. Porterfield, “Oscillatory glucose flux in INS 1 pancreatic β cells: A selfreferencing microbiosensor study”, Anal. Biochem., vol. 411, pp.185-193, 2011.
  • J. Shen, M. Shi, N. Li, B. Yan, H. Ma, Y. Hu and M. Ye, “Facile synthesis and application of Ag-chemically converted graphene nanocomposite”, Nano Res, vol. 3, pp. 339-349, 2010.
  • J. Seweryn and A. Lewera, “Electroxidation of ethanol on carbon-supported Pt–Pd nanoparticles”, J. Power Sources, vol. 205, pp. 264-271, 2012.
  • J. Ryu, H. S. Kim, H. T. Hahn and D. Lashmore, “Carbon nanotubes with platinum nano-islands as glucose biofuel cell electrodes”, Biosens. Bioelectron., vol. 25, pp. 1603-1608, 2010.
  • J. Qian, S. Yan and Z. Xiao, “Electrochemical biosensor based on CdS nanostructure surfaces”, J. Collo. Inter. Sci., vol. 366, pp. 130-134, 2012.
  • J. Ping, Y. Wang, K. Fai, J. Wu and Y. Ying, “Direct electrochemical reduction of graphene oxide on ionic liquid doped screen-printed electrode and its electrochemical biosensing application”, Biosens. Bioelectron., vol. 28, pp. 204-209, 2011.
  • J. Liu, J. Sun and L. Gao, “A promising way to enhance the electrochemical behavior of flexible single-walled carbon nanotube/polyaniline composite films”, J. Phys. Chem. C, vol. 114, pp.19614-19620, 2010.
  • J. Liu, H. Zhou, Q. Wang, F. Zeng and Y. Kuang, “Reduced graphene oxide supported palladium-silver bimetallic nanoparticles for ethanol electrooxidation in alkaline media”, J. Mater. Sci., vol. 47, pp. 2188-2194, 2012.
  • J. Lankelma, Z. H. Nie, E. Carrilho and G. M. Whitesides, “paper-based analytical device for electrochemical flow-injection analysis of glucose in urine”, Anal. Chem., vol. 84, pp. 4147-4152, 2012.
  • J. J. Huang, W. S. Hwang, Y. C. Weng and T. C. Chou, “Electrochemistry of ethanol oxidation on Ni-Pt alloy electrodes in KOH solutions”, Mater. Transactions, vol. 50, pp. 1139-1147, 2009.
  • J. I. Paredes, S. Villar-Rodil, A. Martinez-Alonso and J. M. D. Tascon, “Graphene oxide dispersions in organic solvents”, Langmuir, vol. 24, pp. 10560-10564, 2008.
  • J. Hong, S. W. Kang, “Hydrophobic properties of colloidal films coated with multi-wall carbon nanotubes/reduced graphene oxide multilayers”, Colloid. Surf. A, vol. 374, pp. 54-57, 2011.
  • J. D. Benck, B. A. Pinaud, Y. Gorlin and T. F. Jaramillo, “Substrate selection for fundamental studies of electrocatalysts and photoelectrodes: inert potential windows in acidic, neutral, and basic electrolyte”, Plos One, vol. 10, pp. 1-13, 2014.
  • J. Chmiola, C. Largeot, P. L. Taberna, P. Simon and Y. Gogotsi, “Monolithic carbide-derived carbon films for micro-supercapacitors”, Science, vol. 328, pp. 480-483, 2010.
  • J. Chang, H. Xu, J. Sun and L. Gao, “High pseudocapacitance material prepared via in situ growth of Ni(OH)2 nanoflakes on reduced graphene oxide”, J. Mater. Chem., vol. 22, pp. 11146-11150, 2012.
  • J. C. Meyer, A. K. Geim, M. I. Katsnelson, K. S. Novoselov, T. J. Booth and S. Roth, “The structure of suspended graphene sheets”, Nature, vol. 446, pp. 60-63, 2007.
  • J. B. Xu, T. S. Zhao, Y. S. Li and W. W. Yang, “Synthesis and characterization of the Au-modified Pd cathode catalyst for alkaline direct ethanol fuel cells”, Int J. Hydrogen Energy, vol. 35, pp. 9693-9700, 2010.
  • J. A. Ni, H. X. Ju, H. Y. Chen and D. Leech, “Amperometric determination of epinephrine with an osmium complex and nafion double-layer membrane modified electrode”, Anal. Chim. Acta, vol. 378, pp. 151-157, 1999.
  • I. M. Hodge and A. Eisenberg, “Dielectric and mechanical relaxations in a nafion precursor”, Macromol., vol. 11, pp. 289-293, 1978.
  • I. Katsounaros, W. B. Schneider, J. C. Meier, U. Benedikt, P. U. Biedermann, A. A. Auer and K. J. Mayrhofer, “Hydrogen peroxide electrochemistry on platinum: towards understanding the oxygen reduction reaction mechanism”, Phy. Chem. Chem. Phy., vol. 14, pp. 7384-7391, 2012.
  • I. K. moon, J. Lee, R. S. Ruoff and H. Lee, “Reduced graphene oxide by chemical graphitization”, Nature Commun., vol. 1, pp. 73-79, 2010.
  • H. Wang, Q. Hao, X. Yang, L. Lu and X. Wang, “Graphene oxide doped polyaniline for supercapacitors”, Electrochem. Commun., vol. 11, pp. 1158- 1161, 2009.
  • H. Wang, L. Zhang, X. Tan, C. M. B. Holt, B. Zahiri, B. C. Olsen and D. Mitlin, “Supercapacitive properties of hydrothermally synthesized Co3O4 nanostructures”, J. Phys. Chem. C, vol. 115, pp. 17599-17605, 2011.
  • H. Wang, J. T. Robinson, X. Li and H. Dai, “Solvothermal reduction of chemically exfoliated graphene sheets”, J. Am. Chem. Soc., vol. 131 (29), pp. 9910-9911, 2009.
  • H. W. Yang, M. Y. Hua, S. L. Chen, R. Y. Tsai, “Reusable sensor based on high magnetization carboxyl-modified graphene oxide with intrinsic hydrogen peroxide catalytic activity for hydrogen peroxide and glucose detection”, Biosens. Bioelectron., vol. 41, pp. 172-179, 2013.
  • H. W. Liaw, J. M. Chen and Y. C. Tsai, “Development of an amperometric ethanol biosensor based on a multiwalled carbon nanotube-nafion-alcohol dehydrogenase nanobiocomposite”, J. Nanosci. Nanotechnol., vol. 6, pp. 2396-2402, 2006.
  • H. M. A. Hassan, V. Abdelsayed, A. E. R. S. Khder, K. M. Abou Zeid, J. Terner, M. S. El-Shall, S. I. Al-Resayes and A. A. El-Azhary, “Microwave synthesis of graphene sheets supporting metal nanocrystals in aqueous and organic media”, J. Mater. Chem., vol. 19, pp. 3832-3827, 2009.
  • H. Li, L. Pan, C. Nie, Y. Liu and Z. Sun, “Reduced graphene oxide and activated carbon composites for capacitive deionization”, J. Mater. Chem., vol. 22, pp. 15556-15561, 2012.
  • H. L. Guo, X. F. Wang, Q. Y. Qian, F. B. Wang and X. H. Xia, “A green approach to the synthesis of graphene nanosheets”, ACS Nano., vol. 3, pp. 2653-2659, 2009.
  • H. Jiang, T. Zhao, C. Li and J. Ma, “Hierarchical self-assembly of ultrathin nickel hydroxide nanoflakes for high-performance supercapacitors”, J. Mater. Chem., vol. 21, pp. 3818-3823, 2011.
  • H. J. Shin, K. K. Kim, A. Benayad, S. M. Yoon, H. K. Park, I. S. Jung, Me. H. Jin, H. K. Jeong, J. M. Kim, J. Y. Choi and Y. H. Lee, “Efficient reduction of graphite oxide by sodium borohydride and its effect on electrical conductance”, Adv. Funct. Mater., vol. 19, pp.1987-1992, 2009.
  • H. J. Chu, C. Y. Lee and N. H. Tai, “Green reduction of graphene oxide by Hibiscus sabdariffa L. to fabricate flexible graphene electrode”, Carbon, vol. 80, pp. 725-733, 2014.
  • H. Gao, S. Liao, Z. Liang, H. Liang and F. Luo, “Anodic oxidation of ethanol on core-shell structured Ru@ PtPd/C catalyst in alkaline media”, J. Power. Sources, vol. 196, pp. 6138-6143, 2011.
  • H. G. Nie, Z. Yao, X. M. Zhou, Z. Yang and S. M. Huang, “Nonenzymatic electrochemical detection of glucose using well-distributed nickel nanoparticles on straight multi-walled carbon nanotubes”, Biosens. Bioelectron. vol. 30, pp. 28-34, 2011.
  • H. A. Becerril, J. Mao, Z. Liu, R.M. Stoltenberg, Z. Bao and Y. Chen, “Evaluation of solution-processed reduced graphene oxide films as transparent conductors”, ACS Nano, vol. 2, pp. 463-470, 2008.
  • G. Zhu, T. Xu, T. Lv, L.K. Pan, Q. Zhao and Z. Sun, “Graphene-incorporated nanocrystalline TiO2 films for CdS quantum dot-sensitized solar cells”, J. Electroanal. Chem., vol. 650, pp. 248-251, 2011.
  • G. Zhiguo, Y. Shuping, L. Zaijun, S. Xiulan, W. Guangli, F. Yinjun and L. Junkang, “An ultrasensitive electrochemical biosensor for glucose using CdTe-CdS core-shell quantum dot as ultrafast electron transfer relay between graphene-gold nanocomposite and gold nanoparticle”, Electrochim. Acta, vol. 56, pp. 9162-9167, 2011.
  • G. Wang, L. Zhang and J. Zhang, A review of electrode materials for electrochemical supercapacitors, Chem. Soc. Rev., vol. 41, pp. 797-828, 2012.
  • G. Sobon, J. Sotor, J. Jagiello, R. Kozinski, M. Zdrojek, M. Holdynski, P. Paletko, J. Boguslawski, L. Lipinska and K. M. Abramski, “Graphene oxide vs. reduced graphene oxide as saturable absorbers for Er-doped passively mode-locked fiber laser”, Opt. express, vol. 20, pp. 19463-19473, 2012.
  • G. Q. Lu, A. Crown and A. Wieckowski, “Formic acid decomposition on polycrystalline platinum and palladized platinum electrodes”, J. Phys. Chem. B, vol. 103, pp. 9700-9711, 1999.
  • G. H. Moon, Y. Park, W. Kim and W. Choi, “Photochemical loading of metal nanoparticles on reduced graphene oxide sheets using phosphotungstate”, Carbon, vol. 49, pp. 3454-3462, 2011.
  • G. Demazeau, “Solvothermal processes: a route to the stabilization of new materials”, J Mater Chem, vol. 9 (1), pp. 15-18, 1999.
  • G. Decher and J. D. Hong, “Builup of ultrathin multilayer films by a selfassembly process, I. Consecutive adsorption of anionic and cationic bipolar amphiphiles on charged surfaces”, Makromol. Chem. Macromol. Symp., vol. 46, pp. 321-327, 1991.
  • G. Cheng, Y. Yanb and R. Chen, “From Ni-based nanoprecursors to NiO nanostructures: morphology-controlled synthesis and structure-dependent electrochemical behavior”, New J. Chem., vol. 39, pp. 676-682, 2015.
  • G. A. Snook, P. Kao and A. S. Best, “Conducting-polymer-based supercapacitor devices and electrodes”, J. Power Sources, vol. 196, pp. 1-12, 2011.
  • F. Wang, J. Yao, M. Russel, H. Chen, K. Chen, Y. Zhou, B. Ceccanti, G. Zaray and M. M. F. Choi, “Development and analytical application of a glucose biosensor based on glucose oxidase/O-(2-hydroxyl) propyl-3- trimethylammonium chitosan chloride nanoparticle-immobilized onion inner epidermis”, Biosens. Bioelectron., vol. 25, pp. 2238-2243, 2010.
  • F. Kurniawan, V. Tsakova and V. M. Mirsky, “Gold nanoparticles in nonenzymatic electrochemical detection of sugars”, Electroanalysis, vol. 18, pp. 1937-1942, 2006.
  • F. Ksar, L. Ramos, B. Keita, L. Nadjo, P. Beaunier and H. Remita, “Bimetallic palladium−gold nanostructures: Application in Ethanol oxidation”, Chem. Mater., vol. 21, pp. 3677-3683, 2009.
  • F. Kadirgan, S. Beyhan and T. Atilan, “Preparation and characterization of nano-sized Pt–Pd/C catalysts and comparison of their electro-activity toward methanol and ethanol oxidation”, Int. J. Hydrogen Energy, vol. 34, pp. 4312- 4320, 2009.
  • E. Y. L. Teo, H. N. Lim, R. Josea and K. F. Chong, “Aminopyrene functionalized reduced graphene oxide as a supercapacitor electrode”, RSC Adv., vol. 5, pp. 38111-38116, 2015.
  • E. S. McLamore, J. Shi, D. Jaroch, J. C. Claussen, A. Uchida, Y. Jiang, W. Zhang, S. S. Donkin, M. K. Banks, K. K. Buhman, D. Teegarden, J. L. Rickus and D. M. Porterfield, “A self referencing platinum nanoparticle decorated enzyme-based microbiosensor for real time measurement of physiological glucose transport”, Biosens. Bioelectron., vol. 26, pp. 2237-2245, 2011.
  • E. M. I. M. Ekanayake, D. M. G. Preethichandra and K. Kaneto, “Polypyrrole nanotube array sensor for enhanced adsorption of glucose oxidase in glucose biosensors”, Biosens. Bioelectron., vol. 23, pp. 107-113, 2007.
  • E. Katz, I. Willner and J. Wang, “Electroanalytical and bioelectroanalytical systems based on metal and semiconductor nanoparticles”, Electroanalysis, vol. 16, pp. 19-44, 2004.
  • E. H. Yoo and S. Y. Lee, “Glucose biosensors: An overview of use in clinical practice”, Sensors, vol. 10, pp. 4558-4576, 2010.
  • E. Fitzer, K. H. Kochling, H. P. Boehm and H. Marsh, “Recommended terminology for the description of carbon as a solid (IUPAC Recommendations 1995)” Pure Appl. Chem., vol. 67, pp. 473-506, 1995.
  • D. Zhang, H. Zhao, Z. Fan, M. Li, P. Du, C. Liu, Y. Li, H. Li and H. Cao, “A highly sensitive and selective hydrogen peroxide biosensor based on gold nanoparticles and three-dimensional porous carbonized chicken eggshell membrane”, PLoS One, vol. 10, pp. e0130156, 2015.
  • D. Wei, L. Grande, V. Chundi, R. White, C. Bower, P. Andrew and T. Ryhanen, “Graphene from electrochemical exfoliation and its direct applications in enhanced energy storage devices” Chem. Commun., vol. 48, pp. 1239-1241, 2012.
  • D. R. Dreyer, S. Park, C. W. Bielawski and R. S. Ruoff, “The chemistry of graphene oxide”, Chem. Soc. Rev., vol. 29, pp. 228-240, 2010.
  • D. Pradhan, F. Niroui and K.T. Leung, “High performance flexible enzymatic glucose biosensor based on ZnO nanowires supported on a gold-coated polyester substrate”, App. Mater. Inter., vol. 2, pp. 2409-2412, 2010.
  • D. J. Daly, C. K. O'Sullivan and G. G. Guilbault, “The use of polymers coupled with metallised electrodes to allow H2O2 detection in the presence of electrochemical interferences” Talanta, , vol. 49, pp. 667-678, 1999.
  • D. Feng, F. Wang and Z. Chen, “Electrochemical glucose sensor based on one-step construction of gold nanoparticle–chitosan composite film”, Sens. Actuat. B, vol. 138, pp. 539-544, 2009.
  • D. D. Zhao, S. J. Bao, W. J. Zhou and H. L. Li, “Preparation of hexagonal nanoporous nickel hydroxide film and its application for electrochemical capacitor”, Electrochem. Commun., vol. 9, pp. 869-874, 2007.
  • C. Zhang, S. Chen, P. J. J. Alvarez and W. Chen, “Reduced graphene oxide enhances horseradish peroxidase stability by serving as radical scavenger and redox mediator”, Carbon, vol. 94, pp. 531-538, 2015.
  • C. Yuan, L. Hou, L. Yang, D. Li, L. Shen, F. Zhang and X. Zhang, “Facile interfacial synthesis of flower-like hierarchical a-MnO2 sub-microspherical superstructures constructed by two-dimension mesoporous nanosheets and their application in electrochemical capacitors”, J. Mater. Chem., vol. 21, pp. 16035-16041, 2011.
  • C. Yang, M. Zhou and Q. Xu, “Confining Pt nanoparticles in porous carbon structures for achieving durable electrochemical performance”, Nanoscale, vol. 6, pp. 11863-11870, 2014.
  • C. Xu, R. S. Yuan and X. Wang, “Selective reduction of graphene oxide” New Carbon Materials, vol. 29, pp. 6-66, 2014.
  • C. X. Lim, H. Y. Hoh, P. K. Ang, and K. P. Loh. “Direct voltammetric detection of DNA and pH sensing on epitaxial graphene: an insight into the role of oxygenated defects”, Anal. Chem., vol. 82 (17), pp. 7387-7393, 2010.
  • C. Shan, H. Yang, D. Han, Q. Zhang, A. Ivaska and L. Niu, “Graphene/AuNPs/chitosan nanocomposites film for glucose biosensing”, Biosens. Bioelectron. vol. 25, pp. 1070-1074, 2010.
  • C. Shan, H. Yang, D. Han, Q. Zhang, A. Ivaska and L. Niu, “Electrochemical determination of NADH and ethanol based on ionic liquid-functionalized grapheme”, Biosens. Bioelectron., vol. 25, pp. 1504-1508, 2010.
  • C. N. R. Rao, A. K. Sood, K. S. Subrahmanyam and A. Govindaraj, “Graphene: The new two-dimensional nanomaterial”, Angew. Chem., Int. Ed., vol. 48, pp. 7752-7777, 2009.
  • C. Mattevi, G. Eda, S. Agnoli, S. Miller, K.A. Mkhoyan, O. Celik, D. Mastrogiovanni, C. Cranozzi, E. Carfunkel, M. Chhowalla, “Evolution of electrical, chemical, and structural properties of transparent and conducting chemically derived graphene thin films”, Adv. Funct. Mater., vol. 19 (16), pp. 2577-2583, 2009.
  • C. M. Welch, O. Nekrassova, X. Dai, M. E. Hyde and R. G. Compton, “Fabrication, characterisation and voltammetric studies of gold amalgam nanoparticle modified electrodes”, Chem. Phys. Chem., vol.5, pp. 1405-1410, 2004.
  • C. M. Welch and R. G. Compton, “The use of nanoparticles in electroanalysis: a review”, Anal. Bioanal. Chem., vol. 384, pp. 601-619, 2006.
  • C. Liu, Z. Yu, D. Neff, A. Zhamu and B. Z. Jang, “Graphene-based supercapacitor with an ultrahigh energy density”, Nano Lett., vol. 10, pp. 4863-4868, 2010.
  • C. K. Chua and M. Pumera, “Chemical reduction of graphene oxide: a synthetic chemistry viewpoint”, Chem. Soc. Rev., vol. 43, pp. 291-312, 2014.
  • C. Feng, G. Xu, H. Liu, J. Lv, Z. Zheng and Y. Wu, “Facile fabrication of Pt/graphene/TiO2 NTAs based enzyme sensor for glucose detection”, J. Electrochem. Soc., vol. 161, pp. B1-B8, 2014.
  • C. D. Wagner, W. M. Riggs, L. E. Davis, J. F. Moulder and G. E. Muilenberg, “Handbook of X-ray Photoelectron spectroscopy”, Perkin-Elmer, Eden Prairie, MN (1979).
  • C. D. Simpson, J. D. Brand, A. J. Berresheim, L. Przybilla, H. J. R ader and K. M ullen, “Synthesis of a giant 222 carbon graphite sheet” Chem. Eur. J., vol. 8, pp. 1424-1429, 2002.
  • C. Chen, W. Kong, H. M. Duan and J. Zhang, “Theoretical simulation of reduction mechanism of graphene oxide in sodium hydroxide solution”, Phy. Chem. Chem. Phy. vol. 16, pp. 12858-12864, 2014.
  • B. J. Plowman, M. Mahajan, A. P. O’Mullane and S. K. Bhargava, “Electrochemical detection of dopamine and cytochromecat a nanostructuredgold electrode”, Electrochim. Acta, vol. 55, pp. 8953-8959, 2010.
  • B. C. Brodie, “On the atomic weight of graphite”, Philosophical Transactions of the Royal Society of London, vol. 149, pp. 249-259, 1859.
  • A. Walcarius, S. D. Minteer, J. Wang, Y. Lin and A. Merko i, “Nanomaterials for bio-functionalized electrodes: recent trends”, J. Mater. Chem. B, vol. 1, pp. 4878-4908, 2013.
  • A. Viinikanoja, Z. Wang, J. Kauppila, and C. Kvarnstrom, “Electrochemical reduction of graphene oxide and its in situ spectroelectrochemical characterization”, Phys. Chem. Chem. Phys., vol. 14, pp. 14003-14009, 2012.
  • A. Swietlikowska, M. Gniadek and B. Palys, “Electrodeposited graphene nano-stacks for biosensor applications surface groups as redox mediators for laccase”, Electrochim. Acta, vol. 98, pp. 75-81, 2013.
  • A. Pozio, M. D. Francesco, A. Cemmi, F. Cardellini and L. Giorgi, “Comparison of high surface Pt/C catalysts by cyclic voltammetry”, J. Power Sources, vol. 105, pp. 13-19, 2002.
  • A. N. Grace and K. Pandian, “Pt, Pt–Pd and Pt–Pd/Ru nanoparticles entrapped polyaniline electrodes- A potent electrocatalyst towards the oxidation of glycerol”, Electrochem. Commun., vol. 8, pp. 1340-1348, 2006.
  • A. K. Geim, “Nobel lecture: Random walk to graphene”, Rev. Mod. Phys., vol. 83(3), pp. 851-862, August 2011.
  • A. J. Martins, M. Benelmekki, V. Teixeira, P. J. G. Coutinho, “Platinum nanoparticles as pH sensor for intelligent packaging”, J. Nano Res., vol. 18- 19, pp. 97-104, 2012.
  • A. Heller and B. Feldman, “Electrochemical glucose sensors and their applications in diabetes management”, Chem. Rev., vol. 108, pp. 2482-2505, 2008.
  • A. Guerrieri, G. E. De Benedetto, F. Palmisano and P. G. Zambonin, “Electrosynthesized non-conducting polymers as permselective membranes in amperometric enzyme electrodes: a glucose biosensor based on a cocrosslinked glucose oxidase/overoxidized polypyrrole bilayer”, Biosens. Bioelectron., vol. 13, pp. 103-112, 1998.
  • A. G. Pandolfo and A. F. Hollenkamp, “Carbon properties and their role in supercapacitors”, J. Power Sources, vol. 157, pp. 11-27, 2006.
  • A. Chen and P. Holt-Hindle, “Platinum-based nanostructured materials: synthesis, properties, and applications”, Chem. Rev., vol. 110, pp. 3767-3804, 2010.
  • A. Bianco, H. M. Cheng, T. Enoki, Y. Gogotsi and R. H. Hurt, “All in the graphene family-A recommended nomenclature for two-dimensional carbon materials”, Carbon, vol. 65, pp. 1-6, 2013.