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Bphen作为缓冲层对有机太阳能电池的光电性能影响

Optoelectronic Analysis of Organic Solar Cells with Bphen as a Buffer Layer

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【作者】 黄秋炎钟建刘峰高卓于军胜蒋亚东

【Author】 Huang Qiuyan,Zhong Jian,Liu Feng,Gao Zhuo,Yu Junsheng,Jiang Yadong(State Key Laboratory of Electronic Thin Films and Integrated Devices,School of Optoelectronic Information,University of Electronic Science and Technology of China,Chengdu 610054,CHN)

【机构】 电子科技大学光电信息学院电子薄膜与集成器件国家重点实验室

【摘要】 选用CuPc(酞菁酮)为供电子的材料,使用Bphen(4,7-二苯基-1,10-邻二氮杂菲)为缓冲层的材料,研究了结构为ITO/PEDOT:PSS/CuPc(20 nm)/C60(40 nm)/Bphen(x)/Ag(100 nm)的有机太阳能电池(OSC)。考察OSC性能与缓冲层Bphen厚度之间的关系,优化器件的结构。在标准太阳光照条件下(AM1.5)测量器件的I-V特性,结果显示,太阳电池的能量转换效率与缓冲层厚度密切相关。采用高真空蒸发的方法,制作了结构为ITO/PEDOT:PSS/CuPc(20 nm)/C60(40 nm)/Bphen(x)/Ag(100 nm)的器件,器件效率随着Bphen厚度的增加先增大后变小,当厚度为0 nm时,效率为0.85%;当厚度为2.5 nm时,效率为1.22%;而当厚度为5 nm时,效率为1.69%;当厚度为7.5 nm时,效率则为0.79%,当厚度为10 nm时,效率则为0%。

【Abstract】 CuPc(Phthalocyanine ketone) and Bphen(8-hydroxyquinoline aluminum) were separately selected as donor materials and buffer layers to study the structure of ITO/CuPc(20 nm)/C60(40 nm)/Bphen(x)/Ag(100 nm) of the organic solar cells(OSC).The relationship between OSC barrier properties and the thickness of Bphen was analyzed to optimize the device structure.The current-voltage characteristic of the solar cell under AM1.5 solar illumination showed that the power conversion efficiency(PCE) was dependent of the different thickness of the buffer layer.ITO/CuPc(20 nm)/C60(40 nm)/Bphen(x)/Ag(100 nm) devices were made by high-vacuum evaporation technology.Efficiency first becomes higher and then lower as the thickness of the Bphen increased.When the thickness is 0 nm,the efficiency is 0.85%;when the thickness is 2.5 nm, the efficiency is 1.22%;when the thickness is 5 nm,the efficiency is 1.69%;when the thickness is 7.5 nm,the efficiency is 0.79%;10 nm,the efficiency is 0%.

【关键词】 有机太阳能电池光伏效应缓冲层Bphen
【Key words】 organic soalr cellsphotovoltaicbuffer layerBphen
【基金】 教育部留学归国基金部级基金(GGRYJJ08-05),教育部博士点基金部级基金(20090185110020);四川省青年基金资助课题(09ZQ026-074)(9140A02060609DZ0208)
  • 【文献出处】 光电子技术 ,Optoelectronic Technology , 编辑部邮箱 ,2010年04期
  • 【分类号】TM914.4
  • 【被引频次】2
  • 【下载频次】313
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