박사

화학기상증착법을 이용한 그래핀 메쉬구조의 단일공정 합성과 가장자리 기능화 : Direct Chemical Vapor Deposition Synthesis of Graphene Meshes and Edge Functionalization

이재석 2015년
논문상세정보
' 화학기상증착법을 이용한 그래핀 메쉬구조의 단일공정 합성과 가장자리 기능화 : Direct Chemical Vapor Deposition Synthesis of Graphene Meshes and Edge Functionalization' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 그래핀
  • 도핑
  • 메쉬구조
  • 화학기상증착법
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
242 0

0.0%

' 화학기상증착법을 이용한 그래핀 메쉬구조의 단일공정 합성과 가장자리 기능화 : Direct Chemical Vapor Deposition Synthesis of Graphene Meshes and Edge Functionalization' 의 참고문헌

  • [9) D. B. Farmer, R. Golizadeh-Mojarad, V. Perebeinos, Y.-M. Lin, G. S.Tulevski, J. C. Tsang, P. Avouris, Chemical Doping and Electron?HoleConduction Asymmetry in Graphene Devices. Nano Lett. 9 (2008) 388-392.
  • [4) X. Li, W. Cai, J. An, S. Kim, J. Nah, D. Yang, R. Piner, A. Velamakanni, I.Jung, E. Tutuc et al. Large-Area Synthesis of High-Quality and UniformGraphene Films on Copper Foils. Science 324 (2009) 1312-1314.
  • Z. Ni, Y. Wang, T. Yu, Z. Shen, Raman spectroscopy and imaging ofgraphene, Nano Research 1 (2008) 273-291.59
  • Y.-W. Son, M. L. Cohen, S. G. Louie, Energy Gaps in Graphene Nanoribbons.Phys. Rev. Lett. 97 (2006) 216803.
  • Y. Zhou, K. P. Loh, Making Patterns on Graphene. Adv. Mater. 22 (2010)3615-3620.
  • Y. Zhang, L. Gomez, F. N. Ishikawa, A. Madaria, K. Ryu, C. Wang, A.Badmaev, C. Zhou, Comparison of Graphene Growth on Single-Crystallineand Polycrystalline Ni by Chemical Vapor Deposition. J. Phys. Chem. Lett. 1(2010) 3101-3107.
  • Y. Ye, L. Gan, L. Dai, Y. Dai, X. Guo, H. Meng, B. Yu, Z. Shi, K. Shang, G.Qin, A Simple and Scalable Graphene Patterning Method and Its Applicationin Cdse Nanobelt/Graphene Schottky Junction Solar Cells. Nanoscale 3 (2011)1477-1481.
  • Y. Xia, P. Yang, Y. Sun, Y. Wu, B. Mayers, B. Gates, Y. Yin, F. Kim, H. Yan,One-Dimensional Nanostructures: Synthesis, Characterization, and55Applications, Adv. Mater. 15 (2003) 353-389.
  • Y. Wang, Y. Shao, D. W. Matson, J. Li, Y. Lin, Nitrogen-Doped Graphene andIts Application in Electrochemical Biosensing. ACS Nano 4 (2010) 4, 1790-1798.126
  • Y. Sun, H. H. Wang,M. Xia, Single-Walled Carbon Nanotubes Modified withPd Nanoparticles:?? Unique Building Blocks for High-Performance, Flexible146Hydrogen Sensors, J. Phys. Chem. C 112 (2008) 1250-1259.
  • Y. Pak, S.-M. Kim, H. Jeong, C. G. Kang, J. S. Park, H. Song, R. Lee, N.Myoung, B. H. Lee, S. Seo, J. T. Kim,G.-Y. Jung, Palladium-DecoratedHydrogen-Gas Sensors Using Periodically Aligned Graphene Nanoribbons,ACS Appl. Mater. Interf. 6 (2014) 13293-13298.
  • Y. Lu, G. L. Liu,L. P. Lee, High-Density Silver Nanoparticle Film withTemperature-Controllable Interparticle Spacing for a Tunable SurfaceEnhanced Raman Scattering Substrate, Nano Lett. 5 (2004) 5-9.
  • Y. Im, C. Lee, R.P. Vasquez, M.A. Bangar, N.V. Myung, E.J. Menke, R.M.Penner, M. Yun, Investigation of a Single Pd Nanowire for Use as aHydrogen Sensor, Small 2 (2006) 356-358.
  • Y. Hernandez, V. Nicolosi, M. Lotya, F. M. Blighe, Z. Sun, S. De, I.McGovern, B. Holland, M. Byrne, Y. K. Gun'Ko, High-Yield Production ofGraphene by Liquid-Phase Exfoliation of Graphite. Nat. Nanotechnol. 3(2008) 563-568.
  • Y. Dan, Y. Lu, N. J. Kybert, Z. Luo, A. T. C. Johnson, Intrinsic Response ofGraphene Vapor Sensors. Nano Lett. 9 (2009) 1472-1475.125
  • Y. Cui, C.M. Lieber, Functional Nanoscale Electronic Devices AssembledUsing Silicon Nanowire Building Blocks, Science 291 (2001) 851-853.
  • Y. Chen, C. Zhu, G. Xiao, Reduced-temperature ethanol sensingcharacteristics of flower-like ZnO nanorods synthesized by a sonochemicalmethod, Nanotechnol. 17 (2006) 4537-4541.
  • X. Wang, X. Li, L. Zhang, Y. Yoon, P. K. Weber, H. Wang, J. Guo, H. Dai, NDopingof Graphene Through Electrothermal Reactions with Ammonia,Science 324 (2009) 768-771
  • X. Li, W. Cai, J. An, S. Kim, J. Nah, D. Yang, R. Piner, A. Velamakanni, I.Jung, E. Tutuc, S. K. Banerjee, L. Colombo, R. S. Ruoff, Large-AreaSynthesis of High-Quality and Uniform Graphene Films on Copper Foils,Science 324 (2009) 1312-1314
  • W.I. Park, G.-C. Yi, J.W. Kim, S.M. Park, Schottky nanocontacts on ZnOnanorod arrays, Appl. Phys. Lett. 82 (2003) 4358-4360.57
  • W. Wu, Z. Liu, L. A. Jauregui, Q. Yu, R. Pillai, H. Cao, J. Bao, Y. P. Chen,S.-S. Pei, Wafer-scale synthesis of graphene by chemical vapor deposition andits application in hydrogen sensing, Sens. Actuators, B 150 (2010) 296-300.
  • V. Barone, O. Hod, G. E. Scuseria, Electronic Structure and Stability of128Semiconducting Graphene Nanoribbons. Nano Lett. 6 (2006) 2748-2754.
  • T.-J. Hsueh, C.-L. Hsu, S.-J. Chang, I.C. Chen, Laterally grown ZnOnanowire ethanol gas sensors, Sens. Actuat. B 126 (2007) 473-477.
  • T. Fuhrmann, S. Landwehr, M. E. Rharbi-Kucki, M. Sumper, Diatoms asliving photonic crystals, Appl. Phys. B 78 (2004) 257-260.
  • S.Y. Kim, H.W. Jang, J.K. Kim, C.M. Jeon, W.I. Park, G.-C. Yi, J.-L. Lee,Low-resistance Ti/Al ohmic contact on undoped ZnO, J. Elec. Mater. 31(2002) 868-871.
  • S.V. Patwardhan, N. Mukherjee, M. Steinitz-Kannan, S.J. Clarson,Bioinspired synthesis of new silica structures, Chem. Comm. 112 (2003)1122-1123.
  • S. V. Patwardhan, S. J. Clarson, C. C. Perry, On the role(s) of additives inbioinspired silicification, Chem. Comm. (2005), 1113-1121.
  • S. S. Datta, D. R Strachan, S. M. Khamis, A. T. C. Johnson, CrystallographicEtching of Few-Layer Graphene. Nano Lett. 8 (2008) 1912-1915.
  • S. Mann, G. A. Ozin, Synthesis of inorganic materials with complex form,Nature 382 (1996) 313-318.
  • S. Malola, H. Hakkinen, P. Koskinen, Gold in graphene: In-plane adsorptionand diffusion, Appl. Phys. Lett. 94 (2009) 043106.
  • S. Bae, H. Kim, Y. Lee, X. Xu, J.-S. Park, Y. Zheng, J. Balakrishnan, T. Lei,H. R. Kim, Y. I. Song, Y.-J. Kim, K. S. Kim, B. Ozyilmaz, J.-H. Ahn, B. H.Hong, S. Iijima, Roll-to-roll production of 30-inch graphene films fortransparent electrodes, Nat. Nanotech. 5 (2010) 574-578
  • S. Bae, H. Kim, Y. Lee, X. Xu, J.-S. Park, Y. Zheng, J. Balakrishnan, T. Lei,H. Kim, Y. I. Song, et al. Roll-to-Roll Production of 30-Inch Graphene Filmsfor Transparent Electrodes. Nat. Nanotechnol. 5 (2010) 574-578.
  • R. Wieneke, A. Bernecker, R. Riedel, M. Sumper, C Steinem, A. Geyer, Silicaprecipitation with synthetic silaffin peptides, Org. Biomol. Chem. 9 (2011)5482-5486.
  • R. K. Iler, The Chemistry of Silica: Solubility, Polymerization, Colloid andSurface Properties, and Biochemistry. Wiley: New York, 1979.
  • R. Gordon, D. Losic, M. A. Tiffany, S. S. Nagy, F. A. Sterrenburg, The GlassMenagerie: diatoms for novel applications in nanotechnology, TrendsBiotechnol. 27 (2009) 116-127.92
  • R. Fenollosa, F. Meseguer, Non-Close-Packed Artificial Opals, Adv. Mater. 15(2003) 1282-1285.
  • Q. Zhang, L. Gao, Preparation of oxide nanocrystals with tunablemorphologies by the moderate hydrothermal method: insights from rutileTiO2, Langmuir 19 (2003) 967-971.
  • Q. Wan, Q.H. Li, Y.J. Chen, T.H. Wang, X.L. He, J.P. Li, C.L. Lin, Fabricationand ethanol sensing characteristics of ZnO nanowire gas sensors, Appl. Phys.Lett. 84 (2004) 3654-3656.
  • P. Nemes-Incze, Z. Osvath, K. Kamaras, L. P. Biro, Anomalies in ThicknessMeasurements of Graphene and Few Layer Graphite Crystals by TappingMode Atomic Force Microscopy. Carbon 46 (2008) 1435-1442.
  • P. Feng, Q. Wan, T. Wang, Contact-controlled sensing properties offlowerlike ZnO nanostructures, Appl. Phys. Lett. 87 (2005) 213111.
  • N. Staley, H. Wang, C. Puls, J. Forster, T. N. Jackson, K. McCarthy, B.Clouser, Y. Liu, Lithography-Free Fabrication of Graphene Devices. Appl.Phys. Lett. 90 (2007) 143518-143513.
  • N. Kroger, S. Lorenz, E. Brunner, M. Sumper, Self-Assembly of HighlyPhosphorylated Silaffins and Their Function in Biosilica MorphogenesisScience 298 (2002) 584-586.
  • M.C. McAlpine, H. Ahmad, D. Wang, J.R. Heath, Highly ordered nanowire56arrays on plastic substrates for ultrasensitive flexible chemical sensors, Nat.Mater. 6 (2007) 379-384.
  • M.-H. Seo, M. Yuasa, T. Kida, J.-S. Huh, K. Shimanoe, N. Yamazoe, Gassensing characteristics and porosity control of nanostructured filmscomposed of TiO2 nanotubes, Sens. Actuat. B 137 (2009) 513-520.58
  • M. Sumper, S. Lorenz, E. Brunner, Biomimetic Control of Size in thePolyamine-Directed Formation of Silica Nanospheres, Angew. Chem. Int. Ed.42 (2003) 5192-5195.89
  • M. Sumper, E. Brunner, Learning from Diatoms: Nature's Tools for theProduction of Nanostructured Silica, Adv. Funct. Mater. 16 (2006) 17-26.
  • M. Sumper, Biomimetic Patterning of Silica by Long-Chain Polyamines,Angew. Chem. Int. Ed. 43 (2004) 2251-2254.91
  • M. Sumper, A Phase Separation Model for the Nanopatterning of DiatomBiosilica, Science 295 (2002) 2430-2433.
  • M. S. Hale, J. G. Mitchell, Effects of Particle Size, Flow Velocity, and CellSurface Microtopography on the Motion of Submicrometer Particles overDiatoms, Nano Lett. 2 (2002) 657-663.
  • M. Nihar, M. David, X. Zhiping, T. S. Sreeprasad, N. Ashvin, R. AlfredoAlexander, B. Vikas, Nanotomy-Based Production of Transferable andDispersible Graphene Nanostructures of Controlled Shape and Size. NatureComm. 3 (2012) 844.
  • M. Lotya, Y. Hernandez, P. J. King, R. J. Smith, V. Nicolosi, L. S. Karlsson, F.M. Blighe, S. De, Z. Wang, I. T. McGovern, et al. Liquid Phase Production ofGraphene by Exfoliation of Graphite in Surfactant/Water Solutions. J. Amer.Chem. Soc. 131 (2009) 3611-3620.
  • M. Lafkioti, B. Krauss, T. Lohmann, U. Zschieschang, H. Klauk, K. v.Klitzing, J. H. Smet, Graphene on a Hydrophobic Substrate:DopingReduction and Hysteresis Suppression under Ambient Conditions NanoLett.10 (2010) 1149?1153
  • M. Lafkioti, B. Krauss, T. Lohmann, U. Zschieschang, H. Klauk, K. v.Klitzing, J. H. Smet, Graphene on a Hydrophobic Substrate:Doping11Reduction and Hysteresis Suppression under Ambient Conditions, NanoLett.10 (2010) 1149?1153
  • M. Kim, N. S. Safron, E. Han, M. S. Arnold, P. Gopalan, Electronic Transportand Raman Scattering in Size-Controlled Nanoperforated Graphene. ACSNano 6 (2012) 9846-9854.
  • M. J. Allen, V. C. Tung, R. B. Kaner, Honeycomb Carbon: A Review ofGraphene, Chem. Rev. 110 (2010) 132?145
  • M. Ishigami, J. H. Chen, W. G. Cullen, M. S. Fuhrer, E. D. Williams, AtomicStructure of Graphene on SiO2. Nano Lett. 7 (2007) 1643-1648.
  • M. Hildebrand, B. E. Volcani, W. Gassmann, J. I. Schroeder, A gene family ofsilicon transporters, Nature 385 (1997) 688-689.
  • M. G. Chung, D.-H. Kim, D. K. Seo, T. Kim, H. U. Im, H. M. Lee, J.-B. Yoo,S.-H. Hong, T. J. Kang,Y. H. Kim, Flexible hydrogen sensors using graphenewith palladium nanoparticle decoration, Sens. Actuators, B 169 (2012) 387-392.
  • M. A. Worsley, T. Y. Olson, J. R. I. Lee, T. M. Willey, M. H. Nielsen, S. K.Roberts, P. J. Pauzauskie, J. Biener, J. H. Satcher, T. F. Baumann, HighSurface Area, Sp2-Cross-Linked Three-Dimensional Graphene Monoliths. J.Phys. Chem. Lett. 2 (2011) 921-925.
  • L. Vayssieres, Growth of arrayed nanorods and nanowires of ZnO fromaqueous solutions, Adv. Mater. 15 (2003) 464-466.
  • L. Song, L. Ci, W. Gao, P. M. Ajayan, Transfer Printing of Graphene UsingGold Film. ACS Nano 3 (2009) 1353-1356.
  • L. Gao, W. Ren, B. Liu, Z.-S. Wu, C. Jiang, H.-M. Cheng, CrystallographicTailoring of Graphene by Nonmetal Siox Nanoparticles. J. Amer. Chem. Soc.131 (2009) 13934-13936.
  • L. David, R. Bhandavat, G. Kulkarni, S. Pahwa, Z. Zhong, G. Singh,Synthesis of Graphene Films by Rapid Heating and Quenching at AmbientPressures and Their Electrochemical Characterization. ACS Appl. Mater. Inter.5 (2012) 546-552.
  • L. D. Stefano, P. Maddalena, L. Moretti, I. Rea, I. Rendina, E. D. Tommasi, V.90Mocella, M. D. Stefano, Nano-biosilica from marine diatoms: A brand newmaterial for photonic applications, Superlattices Microstruct. 46 (2009) 84-89.
  • L. Ci, Z. Xu, L. Wang, W. Gao, F. Ding, K. Kelly, B. Yakobson, P. Ajayan,Controlled Nanocutting of Graphene. Nano Res. 1 (2008) 116-122.
  • K.S. Novoselov, A.K. Geim, S.V. Morozov, D. Jiang, Y. Zhang, S.V. Dubonos, I.V.Grigorieva, A.A. Firsov, Electric Field Effect in Atomically Thin Carbon Films, Science, 306(2004) 666-669.
  • K.H. An, S.Y. Jeong, H.R. Hwang, Y.H. Lee, Enhanced Sensitivity of a GasSensor Incorporating Single-Walled Carbon Nanotube-PolypyrroleNanocomposites, Adv. Mater. 16 (2004) 1005-1009.
  • K.-j. Kong, Y. Choi, B.-H. Ryu, J.-O. Lee, H. Chang, Investigation ofmetal/carbon-related materials for fuel cell applications by electronicstructure calculations, Mater. Sci. Eng. C 26 (2006) 1207-1210.
  • K. S. Novoselov1, A. K. Geim,, S. V. Morozov, D. Jiang1, Y. Zhang1, S. V.Dubonos, I. V. Grigorieva, A. A. Firsov, Electric Field Effect in AtomicallyThin Carbon Films, Science 22 (2004) 666-669
  • K. S. Novoselov1, A. K. Geim,, S. V. Morozov, D. Jiang1, Y. Zhang1, S. V.9Dubonos, I. V. Grigorieva, A. A. Firsov, Electric Field Effect in AtomicallyThin Carbon Films, Science 22 (2004) 666-669
  • K. S. Novoselov, A. K. Geim, S. V. Morozov, D. Jiang, M. I.; Grigorieva, I. V.Katsnelson, S. V. Dubonos, A. A. Firsov, Two-Dimensional Gas of MasslessDirac Fermions in Graphene, Nature 438 (2005) 197-200.
  • K. S. Kim, Y. Zhao, H. Jang, S. Y. Lee, J. M. Kim, K. S. Kim, J.-H. Ahn, P.Kim , J.-Y. Choi, B. H. Hong, Large-scale pattern growth of graphene filmsfor stretchable transparent electrodes, Nature 457 (2009) 706-710
  • K. Nakada,; M. Fujita, G. Dresselhaus, M. S. Dresselhaus, Edge State inGraphene Ribbons: Nanometer Size Effect and Edge Shape Dependence.Phys. Rev. B 54 (1996) 17954-17961.
  • K. Kim, H.-B.-R. Lee, R. W. Johnson, J. T. Tanskanen, N. Liu, M.-G. Kim, C.Pang, C. Ahn, S. F. Bent,Z. Bao, Selective metal deposition at graphene linedefects by atomic layer deposition, Nat. Commun. 5 (2014) 4781.
  • J.M. Lee, Y.B. Pyun, J. Yi, J.W. Choung, W.I. Park, ZnONanorod??Graphene Hybrid Architectures for Multifunctional Conductors, J.Phys. Chem. C 113 (2009) 19134-19138.
  • J.M. Lee, J.W. Choung, J. Yi, D.H. Lee, M. Samal, D.K. Yi, C.-H. Lee, G.-C.Yi, U. Paik, J.A. Rogers, W.I. Park, Vertical Pillar-Superlattice Array andGraphene Hybrid Light Emitting Diodes, Nano Lett. 10 (2010) 2783-2788.
  • J.M. Lee, H.Y. Jeong, W.I. Park, Large-scale synthesis of graphene films byJoule heating-induced Chemical Vapor Deposition, J. Elec. Mater. 39 (2010)2190-2195.
  • J. Zhou, Y. Gu, P. Fei, W. Mai, Y. Gao, R. Yang, G. Bao, Z.L. Wang, FlexiblePiezotronic Strain Sensor, Nano Lett. 8 (2008) 3035-3040.
  • J. Yi, J. M. Lee,W. I. Park, Vertically aligned ZnO nanorods and graphenehybrid architectures for high-sensitive flexible gas sensors, Sens. Actuators, B155 (2011) 264-269.
  • J. Yi, H. S. Jang, J. S. Lee, W. I. Park, Bioinspired Morphogenesis of HighlyIntricate and Symmetric Silica Nanostructures. Nano Lett. 12 (2012) 3743-3748.
  • J. Yi, D. H. Lee, W. W. Lee,W. I. Park, Direct Synthesis of Graphene Meshesand Semipermanent Electrical Doping, J. Phys. Chem. Lett. 4 (2013) 2099-2104.
  • J. Wu, L. Xie, Y. Li, H. Wang, Y. Ouyang, J. Guo, H. Dai, ControlledChlorine Plasma Reaction for Noninvasive Graphene Doping, J. Am. Chem.Soc. 133 (2011) 19668?19671
  • J. L. Johnson, A. Behnam, S. J. Pearton,A. Ural, Hydrogen Sensing Using Pd-Functionalized Multi-Layer Graphene Nanoribbon Networks, Adv. Mater. 22(2010) 4877-4880.
  • J. Kong, N.R. Franklin, C. Zhou, M.G. Chapline, S. Peng, K. Cho, H. Dai,Nanotube Molecular Wires as Chemical Sensors, Science 287 (2000) 622-625.
  • J. H. Yoon, H.J. Lee, J.S. Kim, Formaldehyde Gas-Sensing Characteristics ofSnO2-ZnO Materials, Kor. J. Met. Mater. 48 (2009) 169-174.
  • J. Goldberger, A.I. Hochbaum, R. Fan, P. Yang, Silicon Vertically IntegratedNanowire Field Effect Transistors, Nano Lett. 6 (2006) 973-977.
  • J. G. Son, M. Son, K.-J. Moon, B. H. Lee, J.-M. Myoung, M. S. Strano, M.-H.Ham, C. A. Ross, Sub-10 nm Graphene Nanoribbon Array Field-EffectTransistors Fabricated by Block Copolymer Lithography, Adv, Mater, 25(2013) 4723?4728
  • J. Frayret, A. Castetbon, G, Trouve, M. Potin-Gautier. A New Process forSilica Coating, Chem. Phys. Lett. 427 (2006) 356-364.
  • J. Chen, M. Duan, G. Chen, Continuous Mechanical Exfoliation of GrapheneSheets Via Three-Roll Mill. J. Mater. Chem. 22 (2012) 19625-19628.
  • J. Bai, X. Duan, Y. Huang, Rational Fabrication of Graphene NanoribbonsUsing a Nanowire Etch Mask, Nano Lett. 9 (2009) 2083?2087
  • J Bai, X. Zhong, S. Jiang, Y. Huang, X. Duan, Graphene Nanomesh. NatureNanotechnol 5. (2010) 190-194.124
  • I. Simon, N. Barsan, M. Bauer, U. Weimar, Micromachined metal oxide gassensors: opportunities to improve sensor performance, Sens. Actuat. B 73(2001) 1-26.
  • H.-W. Ra, K.-S. Choi, J.-H. Kim, Y.-B. Hahn, Y.-H. Im, Fabrication of ZnONanowires Using Nanoscale Spacer Lithography for Gas Sensors, Small 4(2008) 1105-1109.
  • H. Vedala, D. C. Sorescu, G. P. Kotchey,A. Star, Chemical Sensitivity ofGraphene Edges Decorated with Metal Nanoparticles, Nano Lett. 11 (2011)2342-2347.
  • H. Nagayama, H. Honda, H. Kawahara, J. Electrochem. Soc. 135 (1988)2013-2016.
  • H. Mark, Biological processing of nanostructured silica in diatoms, Prog. Org.Coat. 47 (2003) 256-266.
  • H. Kind, H. Yan, B. Messer, M. Law, P. Yang, Nanowire UltravioletPhotodetectors and Optical Switches, Adv. Mater. 14 (2002) 158-160.
  • H. E. Townley, K. L. Woon, F. P. Payne, H. White-Cooper, A. R. Parker,Modification of the physical and optical properties of the frustule of thediatom Coscinodiscus wailesii by nickel sulfate, Nanotech. 18 (2007) 295101.
  • H. C. Ha, N. S. Sirisoma, P. Kuppusamy, J. L. Zweier, P. M. Woster. R. A.Casero, The natural polyamine spermine functions directly as a free radicalscavenger, Proc. Natl. Acad. Sci. 95 (1998) 11140-11145.
  • G. Neri, A. Bonavita, G. Rizzo, S. Galvagno, N. Donato, L.S. Caputi, A studyof water influence on CO response on gold-doped iron oxide sensors, Sens.Actuat. B 101 (2004) 90-96.
  • G. Korotcenkov, The role of morphology and crystallographic structure ofmetal oxides in response of conductometric-type gas sensors, Mater. Sci. Eng.R 61 (2008) 1-39.
  • G. Korotcenkov, Gas response control through structural and chemical54modification of metal oxide films: state of the art and approaches, Sens.Actuat. B 107 (2005) 209-232.
  • F. Schedin, A. K. Geim, S. V. Morozov, E. W. Hill, P. Blake1, M. I.Katsnelson, K. S. Novoselov, Detection of individual gas molecules adsorbedon graphene, Nat. Materials 6 (2007) 652 ? 655
  • F. Schedin, A. K. Geim, S. V. Morozov, E. W. Hill, P. Blake1, M. I.Katsnelson, K. S. Novoselov, Detection of individual gas molecules adsorbed33on graphene Nature Materials 6 (2007) 652 ? 655
  • F. Schedin, A. K. Geim, S. V. Morozov, E. W. Hill, P. Blake, M. I.Katsnelson,K. S. Novoselov, Detection of individual gas molecules adsorbedon graphene, Nat. Mater. 6 (2007) 652-655.
  • F. Paraguay D, M. Miki-Yoshida, J. Morales, J. Solis, W. Estrada L, Influenceof Al, In, Cu, Fe and Sn dopants on the response of thin film ZnO gas sensorto ethanol vapour, Thin Solid Films 373 (2000) 137-140.
  • F. Noll, M. Sumper, N. Hampp, Nanostructure of Diatom Silica Surfaces andof Biomimetic Analogues, Nano Lett. 2 (2002) 91-95.
  • E. Rollingsa, G.-H. Gweona, S.Y. Zhoua, B.S. Munb, J.L. McChesneyc, B.S.Hussainb, A.V. Fedorovc, P.N. Firstd, W.A. de Heerd, A. Lanzaraa, Synthesisand characterization of atomically thin graphite films on a silicon carbidesubstrate, J. of Phys. Chem. Solids 67 (2006) 2172?2177
  • E. Pouget, E. Dujardin, A. Cavalier, A. Moreac, C Valery,V. Marchi-Artzner T.Weiss, A. Renault, M. Paternostre, F. Artzner, Hierarchical architectures bysynergy between dynamical template self-assembly and biomineralization,Nat. Mater. 6 (2007) 434-439.
  • E. C. Walter, F. Favier,R. M. Penner, Palladium Mesowire Arrays for FastHydrogen Sensors and Hydrogen-Actuated Switches, Anal. Chem 74 (2002)1546-1553.
  • D. J. Belton, S. V. Patwardhan, C. C. Perry, Spermine, spermidine and theiranalogues generate tailored silicas, J. Mater. Chem. 15 (2005) 4629-4638.
  • D. H. Lee, J. Yi, J. M. Lee, S. J. Lee, Y.-J. Doh, H. Y. Jeong, Z. Lee, U. Paik,J. A. Rogers, W. I. Park, Engineering Electronic Properties of Graphene byCoupling with Si-Rich, Two-Dimensional Islands. ACS Nano 7 (2012) 301-307.
  • C.-Y. Su, A.-Y. Lu, C.-Y. Wu, Y.-T. Li, K.-K. Liu, W. Zhang, S.-Y. Lin, Z.-Y.Juang, Y.-L. Zhong, F.-R. Chen, et al. Direct Formation of Wafer ScaleGraphene Thin Layers on Insulating Substrates by Chemical Vapor123Deposition. Nano Lett. 11 (2011) 3612-3616.
  • C.-S. Woo, C.-H. Lim, C.-W. Cho, B. Park, H. Ju, D.-H. Min, C.-J. Lee, S.-B.Lee, Fabrication of flexible and transparent single-wall carbon nanotube gassensors by vacuum filtration and poly(dimethyl siloxane) mold transfer,Microelectron. Eng. 84 (2007) 1610-1613.
  • C.-F. Yeh, C.-L Chen, G.-H. Lin, The Physicochemical Properties and GrowthMechanism of Oxide (SiO2 - xFx) by Liquid Phase Deposition with H2OAddition Only, J. Electrochem. Soc. 141 (1994) 3177-3181.
  • C. X. Cong, T. Yu, Z. H. Ni, L. Liu, Z. X. Shen, W. Huang, Fabrication ofGraphene Nanodisk Arrays Using Nanosphere Lithography. J. Phys. Chem. C113 (2009) 6529-6532.
  • C. Sanchez, H. Arribart, M. G. Guille, Biomimetism and bioinspiration astools for the design of innovative materials and systems, Nat. Mater. 4 (2005)277-288.
  • C. Rout, S. Hari Krishna, S. Vivekchand, A. Govindaraj, C. Rao, Hydrogenand ethanol sensors based on ZnO nanorods, nanowires and nanotubes, Chem.Phys. Lett. 418 (2006) 586-590.
  • C. J. Brinker, G. W. Scherer, Sol-Gel science: The Physics and Chemistry ofSol-Gel Processing. Academic Press: Boston, 1990.
  • C. Berger, Z. Song, X. Li1, X. Wu, N. Brown, C. Naud, D. Mayou, T. Li, J.Hass, A. N. Marchenkov, E. H. Conrad, P. N. First, W. A. de Heer, ElectronicConfinement and Coherence in Patterned Epitaxial Graphene Science 312(2006) 1191-1196
  • B. Guo, Q. Liu, E. Chen, H. Zhu, L. Fang, J. Ru Gong, Controllable NDopingof Graphene, Nano Lett.10 (2010) 4975?4980
  • B. Guo, Q. Liu, E. Chen, H. Zhu, L. Fang, J. R. Gong, Controllable N-Dopingof Graphene. Nano Lett. 10 (2010) 4975-4980.
  • B. Guo, L. Fang, B. Zhang,J. R. Gong, Graphene doping: a review, InsciencesJ. 1 (2011) 80-89.147
  • B. Guo, L. Fang, B. Zhang , J. R. Gong, Graphene Doping: A Review,Insciences J.1 ( 2011) 80-89;
  • B. Guo, L. Fang, B. Zhang , J. R. Gong, Graphene Doping: A Review,10Insciences J.1 ( 2011) 80-89;
  • A.Tomita, Y. Tamai, Optical Microscopic Study on the CatalyticHydrogenation of Graphite. J. Phys. Chem. 78 (1974) 2254-2258.
  • A.M. Morales, C.M. Lieber, A laser ablation method for the synthesis ofcrystalline semiconductor nanowires, Science 279 (1998) 208-211.
  • A.-W. Xu, Y. Ma, H. Colfen, Biomimetic mineralization, J. Mater. Chem. 17(2007) 415-449.
  • A. Z. Sadek, C. Zhang, Z. Hu, J. G. Partridge, D. G. McCulloch, W.Wlodarski,K. Kalantar-zadeh, Uniformly Dispersed Pt?Ni Nanoparticles onNitrogen-Doped Carbon Nanotubes for Hydrogen Sensing, J. Phys. Chem. C114 (2009) 238-242.
  • A. Sinitskii, J. M. Tour, Patterning Graphene through the Self-AssembledTemplates: Toward Periodic Two-Dimensional Graphene Nanostructures withSemiconductor Properties. J. Amer. Chem. Soc. 132 (2010) 14730-14732.
  • A. Schulz, H. Wang, P. v. Rijn, A. J. Boker, Synthetic inorganic materials bymimicking biomineralization processes using native and non-native proteinfunctions, Mater. Chem. 21 (2011) 18903-18918.
  • A. Sandell, J. Libuda, M. Baumer,H. J. Freund, Metal deposition in adsorbateatmosphere: growth and decomposition of a palladium carbonyl-like species,Surf. Sci. 346 (1996) 108-126.
  • A. Reina, X. Jia, J. Ho, D. Nezich, H. Son, V. Bulovic, M. S. Dresselhaus, J.Kong, Large Area, Few-Layer Graphene Films on Arbitrary Substrates byChemical Vapor Deposition, Nano Lett. 9 (2009) 30?35
  • A. Reina, X. Jia, J. Ho, D. Nezich, H. Son, V. Bulovic, M. S. Dresselhaus, J.Kong, Large Area, Few-Layer Graphene Films on Arbitrary Substrates byChemical Vapor Deposition Nano Lett. 9 (2009) 30?3532
  • A. R. Parker, H. E. Townley, Biomimetics of photonic nanostructures, Nat.Nanotech 2 (2007) 347-353.
  • A. Modi, N. Koratkar, E. Lass, B. Wei, P.M. Ajayan, Miniaturized gasionization sensors using carbon nanotubes, Nature 424 (2003) 171-174.
  • A. Kolmakov, Y. Zhang, G. Cheng, M. Moskovits, Detection of CO and O2Using Tin Oxide Nanowire Sensors, Adv. Mater. 15 (2003) 997-1000.
  • A. K. Geim, P. Kim, carbon wonder world, Scientific American 298 ( 2008)90-97
  • A. K. Geim K. S. Novoselov. The rise of graphene Nat. Mater., 6, (2007)183-191.
  • A. C. Ferrari, J. C. Meyer, V. Scardaci, C. Casiraghi, M. Lazzeri, F. Mauri, S.Piscanec, D. Jiang, K. S. Novoselov, S. Roth, et al. Raman Spectrum ofGraphene and Graphene Layers. Phys. Rev. Lett. 97 (2006) 187401.127
  • A. Bernecker, R. Wieneke, R. Riedel,M. Seibt, A. Geyer, C. Steinem, TailoredSynthetic Polyamines for Controlled Biomimetic Silica Formation, J. Amer.Chem. Soc. 132 (2009) 1023-1031.