首页> 外文期刊>Thin Solid Films >Utilization of copper phthalocyanine and bathocuproine as an electron transport layer in photovoltaic cells with copper phthalocyanine/buckminsterfullerene heterojunctions: Thickness effects on photovoltaic perfonnances
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Utilization of copper phthalocyanine and bathocuproine as an electron transport layer in photovoltaic cells with copper phthalocyanine/buckminsterfullerene heterojunctions: Thickness effects on photovoltaic perfonnances

机译:在铜酞菁/巴克敏斯特富勒烯异质结的光伏电池中使用铜酞菁和浴铜作为电子传输层:厚度对光伏性能的影响

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In this work, copper plithalocyanine (CuPc) and bathocuproine (BCP) were used as electron transport layers (ETL) in organic photovoltaic (PV) cells with a structure of indium-tin-oxide/CuPc/C60/ETL/Al. It was found that PV performance was sensitive to the ETL thickness. A complete coverage of ETL on the C60 film was essential to avoid an insulative C60/Al contact. ETL thickness of 6 nm resulted in optimal PV performance. The PV cells with BCP layers of 2-10 nm demonstrated good PV performance due to efficient electron transport from C60 to Al cathode. Similar result was obtained from the devices with CuPc ETL. However, thicker ETL resulted in considerable lose in PV performance. In both cases, different mechanisms responsible for the dependence of PV performance on ETL thickness are discussed. (c) 2006 Elsevier B.V. All rights reserved.
机译:在这项工作中,在具有铟锡氧化物/ CuPc / C60 / ETL / Al的结构的有机光伏(PV)电池中,铜酞菁(CuPc)和浴铜(BCP)被用作电子传输层(ETL)。发现PV性能对ETL厚度敏感。为了避免C60 / Al绝缘接触,必须在C60膜上完全覆盖ETL。 6 nm的ETL厚度可实现最佳的PV性能。由于从C60到铝阴极的有效电子传输,具有2-10 nm BCP层的PV电池表现出良好的PV性能。从具有CuPc ETL的设备获得了相似的结果。但是,较厚的ETL会导致PV性能大幅下降。在这两种情况下,都讨论了负责PV性能与ETL厚度相关性的不同机制。 (c)2006 Elsevier B.V.保留所有权利。

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