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基于薄膜电极溶胶修饰的染料敏化太阳电池光电特性研究
引用本文:徐炜炜,胡林华,罗向东,刘培生,戴松元.基于薄膜电极溶胶修饰的染料敏化太阳电池光电特性研究[J].物理学报,2012,61(8):88801-088801.
作者姓名:徐炜炜  胡林华  罗向东  刘培生  戴松元
作者单位:1. 南通大学杏林学院,南通226019/中国科学院等离子体物理研究所,中国科学院新型薄膜太阳电池重点实验室,合肥230031
2. 中国科学院等离子体物理研究所,中国科学院新型薄膜太阳电池重点实验室,合肥230031
3. 南通大学杏林学院,南通,226019
基金项目:国家重点基础研究发展计划(批准号: 2011CBA00700)、 江苏省高等学校自然科学基础研究计划重大项目(批准号: 08KJA510002, 10KJA140043)、中国科学院新型薄膜太阳电池重点实验室基金(批准号: KF201106)和南通大学杏林学院科研基金(批准号: 2010K122)资助的课题.
摘    要:染料敏化太阳电池(DSC)中的纳米薄膜电极 是决定太阳电池光电转换性能的重要组成部分. 为改善薄膜电极特性, 采用了不同浓度的TiO2溶胶对DSC光阳极导电玻 璃和纳米TiO2多孔薄膜进行不同方式的界面处理. 利用X射线衍射方法对制备得到的多孔薄膜以及溶胶经高温处理 后致密层中纳米TiO2颗粒的尺寸及晶型进行了测试. 采用高分辨透射电子显微镜和场发射扫描电子 显微镜观察了纳米颗粒及薄膜微结构形貌. 采用强度调制光电流谱/光电压谱分析了TiO2溶 胶的不同处理方式对电子传输和复合的影响. 在100 mW· cm-2光强以及暗环境下分别测试了DSC的伏安输出性能以及暗电流. 结果表明, 不同浓度和处理方式均能较好地抑制暗电流. 溶胶处理后光生电子寿命τn延长, 电子传输平均时间τd相应缩短. 采用浓度为0.10 mol·L-1的 溶胶对导电玻璃和多孔膜同时处理, DSC的宏观输出特性最佳, 短路电流密度Jsc提高了10.9%, 光电转换效率η提高了11.9%.

关 键 词:染料敏化太阳电池  溶胶  电子寿命  电子传输时间
收稿时间:2011-05-31

Photoelectricity performance research based on the sol-modified thin film electrode of dye-sensitized solar cells
Xu Wei-Wei,Hu Lin-Hua,Luo Xiang-Dong,Liu Pei-Sheng,Dai Song-Yuan.Photoelectricity performance research based on the sol-modified thin film electrode of dye-sensitized solar cells[J].Acta Physica Sinica,2012,61(8):88801-088801.
Authors:Xu Wei-Wei  Hu Lin-Hua  Luo Xiang-Dong  Liu Pei-Sheng  Dai Song-Yuan
Institution:1. Xinglin College, Nantong University, Nantong 226019, China;2. Key Laboratory of Novel Thin Film Solar Cells, Institute of Plasma Physics, Chinese Academy of Sciences, Hefei 230031, China
Abstract:Nanoporous film electrode is a crucial composition of dye-sensitized solar cells,which influences the photoelectric conversion performance.To improve the property of the photoelectrode,different modification methods by using different concentrations of TiO2 sol are investigated.The crystallite size and phase of the nanoporous TiO2 particles and the TiO2 sol after sintering are studied with X-ray diffraction.The microstructure morphologies of the conductive glass and the films are determined by the high resolution transmission electron microscopy and the field emission scanning electron microscopy.The influences on electron lifetimeτn and the electron transit timeτd are analyzed by intensity-modulated photocurrent spectroscopy and photovoltage spectroscopy from the mechanisms of electron transport and back reaction kinetics.It is found that the back reactions are well suppressed under dark conditions after sol modifications.τn is effectively extended andτd is also shorten correspondingly by any kind of sol treatment.The short-current density and the photoelectric conversion efficiency are increased by 10.9%and 11.9%separately,when 0.10 mol·L-1 sol modification is applied both to the conductive glass and to the nanoporous TiO2 film at the same time.
Keywords:dye-sensitized solar cell  sol  electron lifetime  electron transit time
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