박사

포러스 카본, CoOx, MnOx을 이용한 슈퍼커패시터 전극물질의 특성연구 = A Study on the Supercapacitor Electrode Materials of Porous Carbon, CoOx and MnOx

이진우 2016년
논문상세정보
' 포러스 카본, CoOx, MnOx을 이용한 슈퍼커패시터 전극물질의 특성연구 = A Study on the Supercapacitor Electrode Materials of Porous Carbon, CoOx and MnOx' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Current density
  • Electrochemical double layer
  • carbon materials
  • electro-chemicalproperties
  • energy density
  • nano-particles
  • super-capacitor
  • transitionmetaloxide
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
393 0

0.0%

' 포러스 카본, CoOx, MnOx을 이용한 슈퍼커패시터 전극물질의 특성연구 = A Study on the Supercapacitor Electrode Materials of Porous Carbon, CoOx and MnOx' 의 참고문헌

  • Z. Mingjia, X. Chengcheng, L. Jiangtian, L. Ming and W. Nianqiang. Nanoscale 5 (2013) 72.
  • Z. Lei, J. Zhang, X.S. Zhao, J. Mater. Chem. 22 (2012) 153-160.
  • Y. Zenan, T. Laurene, Z. Lei and T. Jayan. Energy Environ. Sci. 8 (2015) 702.
  • Y. Wang, J.C. Shi, J.L. Cao, G. Sun, Mater. Lett. 65 (2011) 222–224.
  • Y. Okabe, Y. Suda, H. Tanoue, H. Takikawa, H. Ue, K. Shimizu, Electrochim. Acta 131 (2014) 207-213.
  • Y. Meng, D. Gu, F.Q. Zhang, Y.F. Shi, L. Cheng, D. Feng, Z.X. Wu, Z.X. Chen, Y. Wan, A. Stein, D.Y. Zhao, Chem. Mater 18 (2006) 4447-4464.
  • Y. Luo, Y. Deng, W. Mao, X. Yang, K. Zhu, J. Xu and Y. Han, J. Phys. Chem. C 116 (2012) 20975–20981.
  • Y. Han, K. Ramesh, L. Chen, E. Widjaja, S. Chilukoti and F. Chen, J. Phys. Chem. C 111 (2007) 2830–2833.
  • X.J. He, R.C. Li, J.S. Qiu, K. Xie, P.H. Ling, M.X. Yu, X.Y. Zhang, M.D. Zheng, Carbon 50 (2012) 4911-4921.
  • X. Xie and L. Gao , Carbon 45 (2007) 2365.
  • X. Niu, H. Wei, K. Tang, W. Liu, G. Zhao and Y. Yang, RSC Adv., 5 (2015) 66271.
  • X. H. Yang, Y. G. Wang, H. M. Xiong and Y.Y Xia. Electrochim Acta 53 (2007) 75.
  • X. Andrieu, Energy Storage Syst. Electron.: New Trends Electrochem. Technol. 1 (2000) 521.
  • Wu LM, Sitamraju S, Xiao J, Liu B, Li Z, Janik MJ, et al. Chem Eng J 242 (2014) 211–9.
  • W.B. Sui, J.T. Zheng, Z. Yang, M.B. Wu, Mater. Lett. 65 (2011) 2534- 2536.
  • W. Sugimoto, K. Yokoshima, Y., Electrochimca Acta, 52 (2006) 1742.
  • W. Faxing, X. Shiying, H. Yuyang, H. Chenglin, L. Lili and W. Yuping. RSC Advances 3 (2013) 13059.
  • V.G. Hadjiev, M.N. Iliev, I.V. Vergilov, J. Phys. C Solid State Phys. 21 (1988) L199.
  • V. Srinivasan and J. W. Weidner, J. Electrochem. Soc. 144 (1997) L210.
  • Technologies and Materials for Large Supercapacitors, edited by A. Nishino and K. Naoi, published by CMC International, 2010
  • T. Momma, X. Liu, T. Osaka, Y. Ushio, Y. Sawada. J. Power Source 60 (1996) 249.
  • T. Mitomea, Y. Uchidaa, Y. Egashiraa, N. Nishiyama, Colloids Surfaces A Physicochem. Eng. Aspects 449 (2014) 51-56.
  • T. He, D.R. Chen, X.L. Jiao, Y.Y. Xu, Y.X. Gu, Langmuir. 20 (2004) 8404–8408.
  • T. He, D. R. Chen, X. L. Jiao, Y. L. Wang, Y. Z. Duan, Chem. Mater. 17 (2005) 4023–4030.
  • S.M. Chen, R. Ramachandran, V. Mani, R. Saraswathi, Int. J. Electrochem. Sci. 9 (2014) 4072-4085.
  • S.H. Wu, D.H. Chen, J. Col. Int. Sci. 259 (2003) 282-286.
  • S.-L. Kuo and N.-L. Wu, Journal of the Electrochemical Society, 153 (2006) 1317–1324.
  • S. Wu, W. Chen, L. Yan, J. Mater. Chem. A 2 (2014) 2765-2772.
  • S. N. Masoud, M. Fatemeh, D. Fatemeh, S. Kamal, Applied Surface Science 256 (2009) 1476–1480.
  • S. Ardizzone, G. Fregonara, S. Trasatti, Electrochim Acta. 35 (1990) 263–267.
  • R. Kotz, and M. Carlen. Electrochimica Acta 45 (2000) 2483-2498.
  • Q. Wang, J. Yan, Y. Wang, T. Wei, M. Zhang, X. Jing, Z. Fan, Carbon. 67 (2014) 119−127.
  • Q. Javed, F. P. Wang, M. Y. Rafique, A. M. Toufiq, Q. S. Li, H. Mahmood and W. Khan, Nanotechnology 23 (2012) 415603-415611.
  • P. Ruetschi and R. Giovanoli, J. Electrochem. Soc. 135 (1988) 2663.
  • P. Ragupathy, D. H. Park, G. Campet, H. N. Vasan, S. J. Hwang, J. H. Choy and N. Munichandraiah, J. Phys. Chem. C, 113 (2009) 6303–6309.
  • P. Chandrasekhar, Conducting Polymers, Fundamentals and Applications, Kluwer Academic Publishers, 1999
  • O. Haas, E.J. Cairns, Annu. Rep. Prog. Chem., Sect. C 95 (1999) 163.
  • N. Teressa, C. Michael and S. R. S. Prabaharan, Journal of Nanomaterials. (2008) 8.
  • M.M. Yao, Z.H. Hu, Z.J. Xu, Y.F. Liu, P.P. Liu, Q. Zhang, Electrochim Acta. 158 (2015) 96–104.
  • M. Yao, Z. Hu, Z. Xu, Y. Liu, J. Alloys Comp., 644 (2015) 721-728.
  • M. Toupin, T. Brousse, D. Belanger, Chem. Mater.16 (2004) 3184−3190.
  • M. Toupin, T. Brousse and D. Belanger, Chemistry of Materials, 16 (2004) 3184.
  • M. T. Makhlouf, B. M. Abu-Zied, T. H. Mansoure, J. Nanoparticles, 2013 (2013) 384350-7.
  • M. Ramani. B. S. Haran, R. E. White, B. N. Popov, and Ljubomir Arsov, J. Power Sources 93 (2001) 20.
  • M. Mastragostino, R. Paraventi, and A. Zanelli, J. Electrochem. Soc. 147 (2000) 3167.
  • M. Mastragostino, F. Soavi, C. Arbizzani, W. van Schalkwijk, B. Scrosati (Eds.), Advances in Lithium-ion Batteries, Kluwer Academic/Plenum Publishers, 2002, p. 481.
  • M. Mastragostino, C. Arbizzani, Journal of Power Sources 97 (2001) 812-815.
  • M. Mastragostino, C. Arbizzani, F. Soavi, Solid State Ionics 148 (2002) 493.
  • M Jayalakshmi, K Balasubramanian. Int. J. Electrochem. Sci. 3 (2008) 1196 – 1217.
  • L.L. Zhang, X.S. Zhao, Chem. Soc. Rev. 38 (2009) 2520-2531.
  • L.H. Ai, J. Jiang, Powder Tech. 195 (2009) 11–14.
  • L. Wang, X.H. Liu, L. Wang, X.J. Yang, L.D. Lu, J. Mater, Sci. Mater. Electron 22 (2011) 601-606.
  • L. L. Zhang and X. Zhao, Chem. Soc. Rev. 38 (2009) 2520–2531.
  • L. Fan, L. Tang, H.F. Gong, Z.H. Yao, R. Guo, J. Mater Chem. 22 (2012) 16376–16381.
  • K. Naoi, Y. Oura, H. Tsujimoto, Electrochemical Society 25 (1996) 120
  • K. Mohammad, A. Masao, S. Taizo, Y. C. Chan, S. V. Natarajan, E. Mehdi , S. Yoshio, and K. Yoshiyuki. Adv. Funct. Mater. 23 (2013) 2185–2192.
  • K. K. Lee, S. Deng, H. M. Fan, S. Mhaisalkar, H. R. Tan, E. S. Tok, K. P. Loh, W. S. Chin and C. H. Sow. Nanoscale.4 (2012) 2958-2961.
  • K. B. Kim, I. Kim. The 11th International Seminar on Double Layer Capacitors and Similar Energy Storage Device, DEC 3-5, 2001, Deer field Beach, Florida.
  • J.P. Zheng, Electrochem. Solid-State Lett. 2 (1999) 359.
  • J.H. Kang, J. Wen, S.H. Jayaram, A. Yu, X.H. Wang, Electrochim. Acta 115 (2014) 587-598.
  • J. Z. Xian, L. D. Huai, H. Jing, D. Lei, J. Li. Journal of Power Sources 203 (2012) 243-249.
  • J. Wang, S. Q. Zhang, J. Electrochem. Sci. 148 (2001) D75- 77.
  • J. P.Zheng, P. J. Cygan, et al. Journal of the Electrochemical Society 142 (1995) 2699-2703.
  • J. P. Zheng, T. R. Jow, Journal of the Electrochemical Society 142 (1995) L6-L8.
  • J. P. Zheng and T.R. Jow, Journal of the Electrochemical Society. 142 (1995) L6.
  • J. Gamby, P. L. Taberna, et al. Journal of Power Sources 101 (2001) 109- 116.
  • J. G. Schindall, The Change of the Ultra-Capacitors, IEEE Spectrum, November 2007
  • J. Feng, H.C. Zeng, Chem. Mater. 15 (2003) 2829– 2835.
  • J. Deng, L. Kang, G. Bai, Y. Li, P. Li, X. Liu, Y. Yang, F. Gao, W. Liang, 10 Electrochim. Acta, 132 (2014) 127–135.
  • I. K. Gopalakrishnan, N. Bagkar, R. Ganguly, and S. K. Kulshreshtha, Journal of Crystal Growth, 280 (2005) 436–441.
  • I. H Kim, K. B. Kim, Electrochemical and Solid State Letters 4 (2001) A62-A64.
  • H. Y. Lee and J. B. Goodenough, Journal of Solid State Chemistry, 144 (1999) 220.
  • H. Shu, N. Z. Guan, Z. Chao, W. T. Weng,Y. X. Yong, and X. L. Tian. ACS Appl. Mater. Interfaces. 4 (2012) 2242–2249.
  • H. Shi, Electrochimica Acta 41 (1996) 1633-1639.
  • H. Lee, M. S. Cho, I. H. Kim, J. D. Nam, and Y. Lee, Synth. Met. 160 (2010) 1055–1059.
  • G.A. Snook, P. Kao, A.S. Best, J. Power Sources 196 (2011) 1-12.
  • G. Wang, L. Zhang, J.J. Zhang, J. Chem. Soc. Rev. 41 (2012) 797-828.
  • G. Wang, L. Zhang, J. Zhang, Chem. Soc. Rev. 41 (2012) 797-828.
  • G. Salitra, A. Soffer, L. Eliad, Y. Cohen, D. Aurbach, J. Electrochem. Soc. 147 (2000) 2486-2493.
  • F. Gu, C. Li, Y. Hu, L. Zhang, J. Cryst. Growth 304 (2007) 369–373.
  • E. Frackowiak, K. Jurewicz, K. Delpeux, F. B guin, J. Power Sources. 97 (2001) 822–825.
  • E. Frackowiak, G. Lota, J. Applied Physics Letters 86 (2005) 164104.
  • E. Frackowiak, G. Lota, Applied Physics Letters 86 (2006) 164104.
  • E. Frackowiak and F. Beguin. Carbon 39 (2001) 937-950.
  • E. Frackowiak and F. Beguin (2001). Carbon 39(2001) 937-950.
  • David A. Evans, US patent 5369547 issued 1994-11-29.
  • D. Y. Qu, and H. Shi Journal of Power Sources 74 (1998) 99-107.
  • D. Liu, Q. Zhang, P. Xiao, B. B. Garcia, Q. Guo, R. Champion and G. Cao, Chem. Mater. 20 (2008) 1376-1380.
  • D. Kawashima, T. Aihara, Y. Kobayashi, T. Kyotani, A. Tomita, Chem. Mater 12 (2000) 3397-3401.
  • D. Bhattacharjya, M.S. Kim, T.S. Bae, J.S. Yu, J. Power Sources 244 (2013) 799-805.
  • C.S. Du, N. Pan, Nanotechnol 17 (2006) 5314.
  • C. Vix-Guterl, S. Saadallah, K. Jurewicz, E. Frackowiak, M. Reda, J. Parmentier, J. Patarin, F. Beguin, Mater. Sci. Eng. B 108 (2004) 148-155.
  • C. Vix-Guterl, E. Frackowiak, K. Jurewicz, M. Friebe, J. Parmentier, F. Beguin, Carbon 43 (2005) 1293.
  • C. Masarapu, H. F. Zeng, K. H. Hung, and B. Wei, ACS Nano 3 (2009) 2199.
  • C. Liu, F. Li, L. P. Ma and H. M. Cheng, Adv. Mater. 22 (2010) E28– 62.
  • C. Lin, J.A. Ritter, B.N. Popov, J. Electrochem. Soc. 146 (1999) 3639- 3643.
  • C. Feng, J. Zhang, Y. Deng, C. Zhong, L. Liu, W. Hu, Mater. Sci. Eng. B 199 (2015) 15–21.
  • C. Arbizzani, M. Mastragostino, et al. Journal of Power Sources 100 (2001)164-170.
  • C. Arbizzani, M. Mastragostino, Journal of Power Sources 100 (2001) 164-170.
  • C. Arbizzani, M. Mastragostino, Electrochimica Acta 41 (1996) 21-26.
  • Burke, A. Journal of Power Sources 91 (2000) 37-50.
  • Beihu Lu, Zuoan Xiao, Hua Zhu, Wei Xiao, Wenlong Wu, Dihua Wang, Journal of Power Sources 298 (2015) 74-82.
  • Becker, H.I., US patent 2800616, issued 1957-07-23.
  • B.Q. Cao, W.P. Cai, G.T. Duan, Y. Li, Q. Zhao, D.P. Yu, Nanotechnology. 16 (2005) 2567.
  • B.E. Conway, W.G. Pell, J. Solid State Electrochem 7 (2003) 637-644.
  • B.E. Conway, Kluwer Academic/Plenum Publishers, New York, 1999 (Chapter 15).
  • B.E. Conway, J. Solid State Electrochem. 7 (2003) 637.
  • B.E. Conway, Electrochemical Supercapacitors, Kluwer-Plenum Publishing Co., New York 1999.
  • B.E. Convay, Electrochemical Supercapacitors, Scientific Fundamentals and Technological Applications, Plenum, New York, 1999.
  • B. Schumm, Jr., R. L. Middaugh, M. P. Grotheer, and J. C. Hunter, The Electrochemical Society Proceedings Series, Pennington, 85 (1985) 4.
  • B. Kim, H. Chung and W. Kim, J. Phys. Chem. C, 114 (2010) 15223– 15227.
  • B. E. Conway, J. Electrochem. Soc. 138 (1991) 1539–1548.
  • B. E. Conway, Electrochemical Supercapacitor – Scientific Fundamentals and Technology Applications, Kluwer Academic/ Plenum Pulishers, New York (1999).
  • B. D. Desai, J. B. Fernandes, and V. N. Kamat Dalal, J. Power Sources, 16 (1985) 1.
  • Adam Marcus Namisnyk. A survey of electrochemical supercapacitor technology -Technical report (1999).
  • AP. Terzyk, Physicochem Eng Aspects 177 (2001) 23–45.
  • A.K. Shukla, S. Sampath, K. Vijayamohanan, Curr. Sci. 79 (2000) 1656.
  • A. S. Aric , P. Bruce, et al. Nature Materials 4 (2005) 366-377.
  • A. L. Beliakov and A. M. Brintsev, Proceedings of the 7th International Seminar on Double-Layer Capacitors and Similar Energy Storage Devices, Deerfield Beach, FL, December (1997).
  • A. Davies, P. Audette, B. Farrow, F. Hassan, Z. Chen, J.Y. Choi, A. Yu, J. Phys. Chem. C 115 (2011) 17612-17620.
  • A. Chu and P. Braatz. Journal of Power Sources 112 (2002) 236-246.
  • A. Burke, J. Power Sources 91 (2000) 37.
  • A brief history of supercapacitors AUTUMN Batteries & Energy Storage Technology (2007).