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基于掺杂并五苯的高效有机光伏二极管。

Efficient organic photovoltaic diodes based on doped pentacene.

作者信息

Schon J H, Kloc C, Bucher E, Batlogg B

机构信息

Bell Laboratories, Lucent Technologies, New Jersey 07974-0636, USA.

出版信息

Nature. 2000 Jan 27;403(6768):408-10. doi: 10.1038/35000172.

Abstract

Recent work on solar cells based on interpenetrating polymer networks and solid-state dye-sensitized devices shows that efficient solar-energy conversion is possible using organic materials. Further, it has been demonstrated that the performance of photovoltaic devices based on small molecules can be effectively enhanced by doping the organic material with electron-accepting molecules. But as inorganic solar cells show much higher efficiencies, well above 15 per cent, the practical utility of organic-based cells will require their fabrication by lower-cost techniques, ideally on flexible substrates. Here we demonstrate efficiency enhancement by molecular doping in Schottky-type photovoltaic diodes based on pentacene--an organic semiconductor that has received much attention as a promising material for organic thin-film transistors, but relatively little attention for use in photovoltaic devices. The incorporation of the dopant improves the internal quantum efficiency by more than five orders of magnitude and yields an external energy conversion efficiency as high as 2.4 per cent for a standard solar spectrum. Thin-film devices based on doped pentacene therefore appear promising for the production of efficient 'plastic' solar cells.

摘要

近期对基于互穿聚合物网络和固态染料敏化器件的太阳能电池的研究表明,使用有机材料实现高效太阳能转换是可行的。此外,已经证明通过用电子接受分子掺杂有机材料,可以有效提高基于小分子的光电器件的性能。但是,由于无机太阳能电池的效率要高得多,远高于15%,基于有机材料的电池的实际应用将需要通过低成本技术来制造,理想情况下是在柔性基板上制造。在此,我们展示了在基于并五苯的肖特基型光伏二极管中通过分子掺杂提高效率的方法——并五苯是一种有机半导体,作为有机薄膜晶体管的一种有前途的材料受到了广泛关注,但在光电器件中的应用相对较少受到关注。掺杂剂的加入使内部量子效率提高了五个多数量级,并在标准太阳光谱下产生了高达2.4%的外部能量转换效率。因此,基于掺杂并五苯的薄膜器件在生产高效“塑料”太阳能电池方面似乎很有前景。

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