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染料敏化纳米薄膜太阳电池实验研究
引用本文:戴松元,孔凡太,胡林华,史成武,方霞琴,潘旭,王孔嘉.染料敏化纳米薄膜太阳电池实验研究[J].物理学报,2005,54(4):1919-1926.
作者姓名:戴松元  孔凡太  胡林华  史成武  方霞琴  潘旭  王孔嘉
作者单位:中国科学院等离子体物理研究所,合肥 230031
基金项目:国家重点基础研究发展规划(批准号:G2000028206)资助的课题.
摘    要:染料敏化纳米薄膜太阳电池(DSCs)的性能主要是由纳米多孔TiO22薄膜、染 料光敏化剂 、电解质、反电极(光阴极)等几个主要部分决定的.通过优化DSCs各项关键技术和材料的 性能,并通过小面积DSCs的系列实验和优化组合实验来检测各项参数对DSCs性能的影响,获 得在光照1个太阳(AM15)下,光电转换效率达到895%.这为进行产业化制备大面积DSCs 打下了良好基础. 关键词: 染料敏化 太阳电池 优化 效率

关 键 词:染料敏化  太阳电池  优化  效率
文章编号:1000-3290/2005/54(04)/1919-08
收稿时间:2004-04-21

Investigation on the dye-sensitized solar cell
DAI Song-Yuan,KONG Fan-Tai,HU Lin-Hua,SHI Cheng-Wu,FANG Xia-qin,PAN Xu,WANG Kong-Jia.Investigation on the dye-sensitized solar cell[J].Acta Physica Sinica,2005,54(4):1919-1926.
Authors:DAI Song-Yuan  KONG Fan-Tai  HU Lin-Hua  SHI Cheng-Wu  FANG Xia-qin  PAN Xu  WANG Kong-Jia
Abstract:The key technologies in dye-sensitized solar cell, including nanoporous TiO 2 film, dye-sensitizer, electrolyte, platinum catalysis, and TCO glass, have been investigated, and we also optimized the different technologies with assemblying the small area dye-sensitized solar cells. About 9% photo-electric conversion efficiency has been demostrated in our lab under AM1.5 solar simulator. Our results show that there would be a possibility for commercial production based on our technologies.
Keywords:dye-sensitized  solar cell  optimum  efficiency
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