박사

새로운 상대전극 물질을 적용한 양자점 감응형 태양전지의 특성연구

여태빈 2015년
논문상세정보
' 새로운 상대전극 물질을 적용한 양자점 감응형 태양전지의 특성연구' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • charge transfer resistance
  • counter electrode
  • counter electrodes
  • electrocatalytic activity
  • nano-rice structure
  • nickel sulfide
  • quantum dot solar cell
  • quantum dots
  • solar cells
  • thin films
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
192 0

0.0%

' 새로운 상대전극 물질을 적용한 양자점 감응형 태양전지의 특성연구' 의 참고문헌

  • 일본 태양에너지 학회
    “태양에너지 이용기술”, P37∼41 [2012]
  • “태양전지”
    하마카와 ㈜기술정보, P3∼4 [2010]
  • “염료감응형 태양전지의 흡착특성 개선을 통한 효율 향상 연구”
    서현웅 부산대학교 대학원 전자전기공학과 공학석사학위논문 [2008]
  • “광전기화학형 염료감응형 태양전지 기술”
    서선희 이동윤 이원재 물리학과 첨단기술, pp. 16-19, July/August [2007]
  • Z. Yang, C. Y. Chen, C. W. Liu, C. L. Li, H. T. Chang, Adv. Energy Mater. 2011, 1, 259-264.
  • Z. Tachan, M. Shalom, I. Hod, S. Ruhle, S. Tirosh, A. Zaban, PbS as a highly cat-alytic counter electrode for polysulfide-based quantum dot solar cells, Journal of Physical Chemistry C 115 (2011) 6162.
  • Y. Tachibana, J. E. Moser, M. Gr tzel, D. R. Klug, J. R. Durrant, "Subpicosecond interfacial charge separation in dye-sensitized nanocrystalline titanium dioxide films", J. Phys. Chem., 100, 20056, 1996.
  • Y. L. Lee, Y. S. Lo, Adv. Funct. Mater. 2009, 19, 604-609.
  • Y. L. Lee, C. H. Chang, J. Power Sources 2008, 185, 584-588.
  • X. Y. Yu, B. X. Lei, D. B. Kuang, C. Y. Su, Chem. Sci. 2011, 2, 1396-1400.
  • W. W. Yu, L. Qu, W. Guo, X. Peng, Chem. Mater. 2003, 15, 2854-2860.
  • V. Chakrapani, D. Baker, P. V. Kamat, J. Am. Chem. Soc. 2011,133, 9607-9615.
  • T. Shu, P. Xiang, Z. M. Zhou, H. Wang, G. H. Liu, H. W. Han, Y. D. Zhao, Meso-scopic nitrogen-doped TiO2 spheres for quantum dot-sensitized solar cells, Electrochimica Acta 68 (2012) 166.
  • Sang-Wook Kim, Meejae Kang, Poly Science and Technology, 23, 493
  • Sang-Hyuk Im, Poly Science and Technology, 23, 499
  • S. Ruhle, M. Shalom, A. Zaban, ChemPhysChem 2010, 11, 2290-2304.
  • S. Q. Fan, B. Fang, J. H. Kim, B. Jeong, C. Kim, J. S. Yu, J. Ko, Ordered multimodal porous carbon as highly efficient counter electrodes in dye-sensitized and quantum dot solar cells, Langmuir Article 26 (2010) 13644.
  • S. C. Lin, Y. L. Lee, C. H. Chang, Y. J. Shen, Y. M. Yang, Appl. Phys. Lett. 2007, 90, 143517.
  • Q. W. Jiang, G. R. Li, X. P. Gao, Chem. Commun. 2009, 6720-6722.
  • P. Wang, S. M. Zakeeruddin, J. E. Moser, R. H. Baker, P. Comte, V. Aranyos, A. Hagfeldt, M. K. Nazeeruddin, M. Grazel, Adv. Mater. 2004, 16, 1806-1811.
  • P. V. Kamat, J. Phys. Chem. C 2008, 112, 18737-18753.
  • Michael Gr tzel, "Dye-sensitized solar cells", J. Photochem. Photobio. C: Photochem. Rev., Vol. 4, pp. 145, 2003.
  • M. Wu, X. Lin, Y. Wang, L. Wang, W. Guo, D. Qi, X. Peng, A. Hagfeldt, M. Grazel, T. Ma, J. Am. Chem. Soc. 2012, 134, 3419-3428.
  • M. Wu, X. Lin, Y. Wang, L. Wang, W. Guo, D. Qi, X. Peng, A. Hagfeldt, M. Gratzel, T. Ma, Economical Pt-free catalysts for counter electrodes of dye-sensitized solar cells, The Journal of the American Ceramic Society 134 (2012) 3419.
  • M. Wu, Q. Zhang, J. Xiao, C. Ma, X. Lin, C. Miao, Y. He, Y. Gao, A. Hagfeldt, T. Ma, Two flexible counter electrodes based on molybdenum and tungsten nitrides for dye-sensitized solar cells, The Journal of Materials Chemistry 21 (2011) 10761.
  • M. Wu, Q. Zhang, J. Xiao, C. Ma, X. Lin, C. Miao, Y. He, Y. Gao, A. Hagfeldt, T. Ma, J. Mater. Chem. 2011, 21, 10761-10766.
  • M. Wang, A. M. Anghel, B. Marsan, N. L. C. Ha, N. Pootrakulchote, S. M. Zakeeruddin, M. Gratzel, CoS supersedes Pt as efficient electrocatalyst for triiodide reduction in dye-sensitized solar cells, The Journal of the American Ceramic Society 131 (2009) 15976.
  • M. Seol, E. Ramasamy, J. Lee, K. Yong, J. Phys. Chem. C 2011, 115, 22018-22024.
  • M. K. Nazeeruddin, A. Kay, I. Rodicio, R. H. Baker, E. Muller, P. Liska, N. Vlachopoulos, M. Grazel, J. Am. Chem. Soc. 1993, 115, 6382-6390.
  • M. Gratzel, "Photoelectrochemical cells", Nature Vol. 414, pp. 338, 2001.
  • M. Durr, A. Schmid, M. Obermaier, S. Rosselli, A. Yasuda, G. Nelles, "Low-temperature fabrication of dye-sensitized solar cells by transfer of composite porous layers", Nature, Vol. 4, pp. 607, 2005.
  • M. Adachi, M. Sakamoto, J. Jiu, Y. Ogata, S. Isoda, J. Phys. Chem. B 2006, 110, 13872-13880.
  • L. Etgar, D. Yanover, R. K. Cˇ apek, R. Vaxenburg, Z. Xue, B. Liu, M. K. Nazeeruddin, E. Lifshitz, M. Grazel, Adv. Funct. Mater. 2013, 23, 2736-2741.
  • Kangha Lee, Ju Young Woo, Whi Dong Kim, Doh C. Lee, Poly Science and Technology, 23, 486
  • J. Tian, Q. Zhang, E. Uchaker, Z. Liang, R. Gao, X. Qu, S. Zhang, G. Cao, J. Mater. Chem. A 1, 6770 (2013).
  • J. Kim, H. Choi, C. Nahm, J. Moon, C. Kim, S. Nam, D. Jung, B. Park, J. Power Sources 196, 10526 (2011).
  • I. Mora-Sero, S. Gimenez, F. Fabregat-Santiago, R. Gomez, Q. Shen, T. Toyoda, J. Bisquert, Recombination in quantum dots sensitized solar cells, Accounts in Chemical Research 42 (2009) 1848.
  • I. M. Sero, J. Bisquert, J. Phys. Chem. Lett. 2010, 1, 3046-3052.
  • H. J. Lee, M. Wang, P. Chen, D. R. Gamelin, S. M. Zakeeruddin, M. Gra tzel, M. K. Nazeeruddin, Efficient CdSeQuantum dot-sensitized solar cells prepared by an improved successive ionic layer adsorption reaction process, Nano Letters 9 (2009) 4221.
  • H. Chen, L. Zhu, H. Liu, W. Li, ITO porous film supported metal sulfide counter electrodes for high-performance quantum dot sensitized solar cells, The Journal of Physical Chemistry C 117 (2013) 3739.
  • G. Hodes, J. Manassen, D. Cahen, J. Electrochem. Soc. 1980, 127, 544-549.
  • F. F. Santiago, J. Bisquert, E. Palomares, L. Otero, D. Kuang, S. M. Zakeeruddin, M. Grazel, J. Phys. Chem. C 2007, 111,6550-6560.
  • E. Ramasamy, W. J. Lee, D. Y. Lee, J. S. Song, Spray coated multi-wall carbon nanotube counter electrode for tri-iodide I3- reduction in dye-sensitized solar cells, Electrochemistry Communications 10 (2008) 1087.
  • C. J. Raj, S. N. Karthick, S. Park, K. V. Hemalatha, S. K. Kim, K. Prabakar, H. J. Kim, J. Power Sources 2014, 248, 439-446.
  • C. F. Chi, P. Chen, Y. L. Lee, I. P. Liu, S. C. Chou, X. L. Zhang, U. Bach, J. Mater. Chem. 2011, 21, 17534-17540.
  • B. O'Regan, M. Gr tzel, “A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films”, Nature, Vol. 353, pp. 737, 1991.
  • A. Hauch, A. Georg, Electrochim. Acta 2001, 46, 3457-3466.
  • A. Hauch, A. Georg, Diffusion in the electrolyte and charge-transfer reaction at the platinum electrode in dye-sensitized solar cells, Electrochimica Acta 46 (2001) 3457.