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首页> 外文期刊>Organic Electronics >Metal salt modified PEDOT:PSS as anode buffer layer and its effect on power conversion efficiency of organic solar cells
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Metal salt modified PEDOT:PSS as anode buffer layer and its effect on power conversion efficiency of organic solar cells

机译:金属盐修饰的PEDOT:PSS作为阳极缓冲层及其对有机太阳能电池功率转换效率的影响

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摘要

The effects of metal chlorides such as lid, NaCl, CdCl_2 and CuCl_2 on optical transmittance, electrical conductivity as well as morphology of PEDOT:PSS films have been investigated. Transmittance spectra of spun PEDOT:PSS layers were improved by more than 6% to a maximum of 94% in LiCl doped PEDOT:PSS film. The surface of the PEDOT:PSS films has exhibited higher roughness associated with an increase in the electrical conductivity after doping with metal salts. The improvement in the physical properties of PEDOT:PSS as the hole transport layer proved to be key factors towards enhancing the P3HT:PCBM bulk heterojunction (BHJ) solar cells. These improvements include significantly improved power conversion efficiency with values as high as 6.82% associated with high fill factor (61%) and larger short circuit current densitv (~18 mA cm~(-2)).
机译:研究了盖,NaCl,CdCl_2和CuCl_2等金属氯化物对PEDOT:PSS薄膜的透光率,电导率和形貌的影响。在掺LiCl的PEDOT:PSS薄膜中,纺出的PEDOT:PSS层的透射光谱提高了6%以上,最大达到94%。掺杂金属盐后,PEDOT:PSS膜的表面显示出较高的粗糙度,这与电导率的增加有关。事实证明,作为空穴传输层的PEDOT:PSS物理性能的改善是增强P3HT:PCBM本体异质结(BHJ)太阳能电池的关键因素。这些改进包括显着提高了功率转换效率,其值高达6.82%,与高填充因子(61%)和更大的短路电流密度(〜18 mA cm〜(-2))相关。

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