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Electrical properties of polymer photovoltaic cells using pentacene-doped PEDOT: PSS as a hole conducting layer

机译:使用并五苯掺杂的PEDOT:PSS作为空穴导电层的聚合物光伏电池的电性能

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摘要

The performance characteristics of polymer photovoltaic cells, in which the pentacene-doped PEDOT:PSS thin films are used as a hole conducting layer, have been investigated and characterized by employing AFM, SEM, UV-visible, work function and current density-voltage analysis. Pentacene-doped PEDOT:PSS was prepared by blending pentacene with 1-methy1-2-pyrrolidinone(NMP)and PEDOT:PSS in solution. By using NMP as a solvent, pentacene as a dopant was introduced into PEDOT:PSS films. The surface roughness of PEDOT:PSS films was increased, and aggregate boundaries were clearly distinguished. Pentacene might form aggregations with PEDOT:PSS during the film forming process. UV-visible transmission intensity also increased as doping percent of pentacene increased. The work function of pentacene-doped PEDOT:PSS film decreased by approximately 0.3 eV, and this may contribute to moving holes easily toward ITO substrate. Consequently, pentacene-doped PEDOT:PSS film as a hole conducting layer leads to improving the performance characteristics of photovoltaic cells.
机译:通过原子力显微镜,扫描电镜,紫外可见光,功函数和电流密度-电压分析,研究并表征了其中并五苯掺杂的PEDOT:PSS薄膜用作空穴导电层的聚合物光伏电池的性能特征。 。通过在溶液中并五苯与1-甲基1-2-吡咯烷酮(NMP)和PEDOT:PSS共混来制备并五苯掺杂的PEDOT:PSS。通过使用NMP作为溶剂,将并五苯作为掺杂剂引入PEDOT:PSS膜中。 PEDOT:PSS膜的表面粗糙度增加,并且聚集体边界清晰可见。并五苯可能在成膜过程中与PEDOT:PSS形成聚集体。随着并五苯的掺杂百分比增加,紫外线可见透射强度也增加。并五苯掺杂的PEDOT:PSS薄膜的功函降低了约0.3 eV,这可能有助于使空穴容易向ITO基板移动。因此,并五苯掺杂的PEDOT:PSS膜作为空穴传导层导致改善光伏电池的性能。

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