Basic aspects for improving the energy conversion efficiency of hetero-junction organic photovoltaic cells.

Nano reviews Pub Date : 2013-07-10 Print Date: 2013-01-01 DOI:10.3402/nano.v4i0.21055
Sou Ryuzaki, Jun Onoe
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引用次数: 7

Abstract

Hetero-junction organic photovoltaic (OPV) cells consisting of donor (D) and acceptor (A) layers have been regarded as next-generation PV cells, because of their fascinating advantages, such as lightweight, low fabrication cost, resource free, and flexibility, when compared to those of conventional PV cells based on silicon and semiconductor compounds. However, the power conversion efficiency (η) of the OPV cells has been still around 8%, though more than 10% efficiency has been required for their practical use. To fully optimize these OPV cells, it is necessary that the low mobility of carriers/excitons in the OPV cells and the open circuit voltage (V OC), of which origin has not been understood well, should be improved. In this review, we address an improvement of the mobility of carriers/excitons by controlling the crystal structure of a donor layer and address how to increase the V OC for zinc octaethylporphyrin [Zn(OEP)]/C60 hetero-junction OPV cells [ITO/Zn(OEP)/C60/Al]. It was found that crystallization of Zn(OEP) films increases the number of inter-molecular charge transfer (IMCT) excitons and enlarges the mobility of carriers and IMCT excitons, thus significantly improving the external quantum efficiency (EQE) under illumination of the photoabsorption band due to the IMCT excitons. Conversely, charge accumulation of photo-generated carriers in the vicinity of the donor/acceptor (D/A) interface was found to play a key role in determining the V OC for the OPV cells.

Abstract Image

Abstract Image

Abstract Image

提高异质结有机光伏电池能量转换效率的基本方面。
由供体层(D)和受体层(A)组成的异质结有机光伏(OPV)电池与基于硅和半导体化合物的传统光伏电池相比,具有重量轻、制造成本低、无资源和灵活性等优点,被认为是下一代光伏电池。然而,OPV电池的功率转换效率(η)仍然在8%左右,尽管其实际使用需要超过10%的效率。为了充分优化这些OPV电池,必须改善OPV电池中载流子/激子的低迁移率和开路电压(V OC),其起源尚未得到很好的了解。在这篇综述中,我们通过控制供体层的晶体结构来改善载流子/激子的迁移率,并讨论了如何提高辛乙基卟啉锌[Zn(OEP)]/C60异质结OPV电池[ITO/Zn(OEP)/C60/Al]的电压OC。研究发现,Zn(OEP)薄膜的结晶增加了分子间电荷转移(IMCT)激子的数量,增大了载流子和IMCT激子的迁移率,从而显著提高了IMCT激子在光吸收带照射下的外量子效率(EQE)。相反,在供体/受体(D/A)界面附近的光产生载流子的电荷积累被发现在决定OPV细胞的电压OC中起关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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