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Hole transport parameters in a PTOPT based organic solar cell

机译:基于PTOPT的有机太阳能电池中的空穴传输参数

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摘要

The photovoltaic and charge transport properties of solar cells whose active layer is made from poly[3-(4-octylphenyl)- 2, 2′-bithiophene] (PTOPT) was studied. Devices are prepared in a sandwich-type structure of the form Al/PTOPT/ PEDOT:PSS/ITO. The diodes showed good rectification needed for the PV cell. The symmetric nature of the semilogarithmic J-V plot under dark and low temperature reveals that there is a unipolar charge injection in both sides of the electrodes. Based on the space charge limited region J-V data, it was possible to study the electric field dependence of the hole transport, which enable us to derive important parameters such as the zero field mobility (μo) and the field activation factor (γ).
机译:研究了其活性层由聚[3-(4-辛基苯基)-2、2'-联噻吩](PTOPT)制成的太阳能电池的光电性能和电荷传输性能。器件以Al / PTOPT / PEDOT:PSS / ITO形式的夹心型结构制备。二极管显示了PV电池所需的良好整流。半对数J-V图在黑暗和低温下的对称性质表明,在电极的两侧都有单极性电荷注入。基于空间电荷受限区域的J-V数据,可以研究空穴传输的电场依赖性,这使我们能够得出重要的参数,例如零场迁移率(μo)和场激活因子(γ)。

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