光伏
有机太阳能电池
材料科学
电极
纳米尺度
纳米技术
电场
光电子学
有机半导体
载流子
半导体
静电学
光伏系统
聚合物
电气工程
化学
复合材料
物理
物理化学
量子力学
工程类
作者
Lara‐Jane Pegg,Ross A. Hatton
出处
期刊:ACS Nano
[American Chemical Society]
日期:2012-05-10
卷期号:6 (6): 4722-4730
被引量:33
摘要
Generic design rules for electrode-organic semiconductor contacts that transcend specific materials are urgently required to guide the development of new electrodes and provide a framework for engineering this important class of interface. Herein a novel nanostructured window electrode is utilized in conjunction with three-dimensional electrostatic modeling to elucidate the importance of geometric electric field enhancement effects at the electrode interfaces in organic photovoltaics. The results of this study show that nanoscale protrusions at the electrode surfaces in organic photovoltaics dramatically improve the efficiency of photogenerated charge carrier extraction to the external circuit and that the origin of this improvement is the local amplification of the electrostatic field in the vicinity of said protrusions. This wholly geometric approach to engineering electrodes at the nanoscale is materials generic and can be employed to enhance the efficiency of charge carrier injection or extraction in a wide range of organic electronic devices.
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