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人工晶体学报 ›› 2009, Vol. 38 ›› Issue (6): 1324-1328.

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成膜剂对染料敏化太阳电池性能的影响

纪伟伟;张晓丹;杨振华;赵颖   

  1. 南开大学光电子薄膜器件与技术研究所,南开大学光电子薄膜器件与技术天津市重点实验室,光电信息技术科学教育部重点实验室,天津,300071;南开大学光电子薄膜器件与技术研究所,南开大学光电子薄膜器件与技术天津市重点实验室,光电信息技术科学教育部重点实验室,天津,300071;河北工业大学微电子与固体电子学系,天津,300130
  • 出版日期:2009-12-15 发布日期:2021-01-20
  • 基金资助:
    国家重点基础研究发展规划(973计划)(2006CB202602;2006CB202603);天津市重点基金(06YFJZJC01700);国家自然科学基金(60506003);科技部国际合作重点项目(2006DFA62390)

Influence of Filmogens on the Performance of Dye-sensitized Solar Cells

JI Wei-wei;ZHANG Xiao-dan;YANG Zhen-hua;ZHAO Ying   

  • Online:2009-12-15 Published:2021-01-20

摘要: 通过刮涂法将P25粉的乙醇体系配制的TiO_2浆料制备成光阳极中的TiO_2薄膜,在TiO_2浆料中分别加入聚乙烯吡咯烷酮(PVP)和乙基纤维素(M70),作对比实验,研究发现加入PVP制备的TiO_2薄膜的宏观和微观结构都得到了明显的改善,其影响了TiO_2薄膜的孔隙率、比表面积和染料的吸附量,显著改善了染料敏化太阳电池性能,短路电流由5.59 mA/cm~2增到11.31 mA/cm~2,电池效率由2.70;增到5.31;(AM1.5).

关键词: TiO_2浆料;PVP;染料敏化太阳电池

Abstract: TiO_2 pastes were prepared using P25 powders and ethanol systems, which were used to make TiO_2 films as photo anode by the method of doctor blade coating. Comparing poly-vinyl pyrrolidone (PVP) with ethyl cellulose (M70) as film forming agents, it is discovered that the macro-and micro-structure of TiO_2 film using PVP has been improved, which mainly affects TiO_2 films porosities, surface area and dye adsorptions. PVP has played a significant role on the performances of dye-sensitized solar cells. As a result, short-circuit current increased from 5.59 mA/cm~2 to 11.31 mA/cm~2 and conversion efficiency increased from 2.70; to 5.31; under the standard AM1.5 irradiation condition.

Key words: TiO_2 pastes were prepared using P25 powders and ethanol systems, which were used to make TiO_2 films as photo anode by the method of doctor blade coating. Comparing poly-vinyl pyrrolidone (PVP) with ethyl cellulose (M70) as film forming agents, it is discovered that the macro-and micro-structure of TiO_2 film using PVP has been improved, which mainly affects TiO_2 films porosities, surface area and dye adsorptions. PVP has played a significant role on the performances of dye-sensitized solar cells. As a result, short-circuit current increased from 5.59 mA/cm~2 to 11.31 mA/cm~2 and conversion efficiency increased from 2.70; to 5.31; under the standard AM1.5 irradiation condition.

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