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富勒烯表面覆盖率与有机太阳能电池阴极界面接触选择性的相互作用。

Interplay between fullerene surface coverage and contact selectivity of cathode interfaces in organic solar cells.

机构信息

Photovoltaic and Optoelectronic Devices Group, Departament de Física, Universitat Jaume I, ES-12071 Castelló, Spain.

出版信息

ACS Nano. 2013 May 28;7(5):4637-46. doi: 10.1021/nn4014593. Epub 2013 Apr 30.

Abstract

Interfaces play a determining role in establishing the degree of carrier selectivity at outer contacts in organic solar cells. Considering that the bulk heterojunction consists of a blend of electron donor and acceptor materials, the specific relative surface coverage at the electrode interfaces has an impact on the carrier selectivity. This work unravels how fullerene surface coverage at cathode contacts lies behind the carrier selectivity of the electrodes. A variety of techniques such as variable-angle spectroscopic ellipsometry and capacitance-voltage measurements have been used to determine the degree of fullerene surface coverage in a set of PCPDTBT-based solar cells processed with different additives. A full screening from highly fullerene-rich to polymer-rich phases attaching the cathode interface has enabled the overall correlation between surface morphology (relative coverage) and device performance (operating parameters). The general validity of the measurements is further discussed in three additional donor/acceptor systems: PCPDTBT, P3HT, PCDTBT, and PTB7 blended with fullerene derivatives. It is demonstrated that a fullerene-rich interface at the cathode is a prerequisite to enhance contact selectivity and consequently power conversion efficiency.

摘要

界面在外接触处的载流子选择性方面起着决定性的作用。考虑到本体异质结由电子给体和受体材料的混合物组成,因此在电极界面处特定的相对表面覆盖率会对载流子选择性产生影响。这项工作揭示了富勒烯在阴极接触处的表面覆盖率如何影响电极的载流子选择性。使用了各种技术,如变角光谱椭圆偏振法和电容-电压测量法,以确定一组基于 PCPDTBT 的太阳能电池中不同添加剂处理后的富勒烯表面覆盖率。从高度富勒烯相到附着在阴极界面的聚合物相的全面筛选,使表面形态(相对覆盖率)和器件性能(工作参数)之间建立了整体相关性。在另外三个供体/受体系统:PCPDTBT、P3HT、PCDTBT 和 PTB7 与富勒烯衍生物混合中,进一步讨论了测量的普遍有效性。结果表明,富勒烯在阴极界面的富集是增强接触选择性并提高功率转换效率的前提条件。

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