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低能隙聚合物中光致光伏过程中极化子对生成的结构相关性。

Structural correlations in the generation of polaron pairs in low-bandgap polymers for photovoltaics.

机构信息

Photonics and Optoelectronics Group, Department of Physics and CeNS Ludwig-Maximilians-Universität München, 80799 Munich, Germany.

出版信息

Nat Commun. 2012 Jul 24;3:970. doi: 10.1038/ncomms1967.

Abstract

Polymeric semiconductors are materials where unique optical and electronic properties often originate from a tailored chemical structure. This allows for synthesizing conjugated macromolecules with ad hoc functionalities for organic electronics. In photovoltaics, donor-acceptor co-polymers, with moieties of different electron affinity alternating on the chain, have attracted considerable interest. The low bandgap offers optimal light-harvesting characteristics and has inspired work towards record power conversion efficiencies. Here we show for the first time how the chemical structure of donor and acceptor moieties controls the photogeneration of polaron pairs. We show that co-polymers with strong acceptors show large yields of polaron pair formation up to 24% of the initial photoexcitations as compared with a homopolymer (η=8%). π-conjugated spacers, separating the donor and acceptor centre of masses, have the beneficial role of increasing the recombination time. The results provide useful input into the understanding of polaron pair photogeneration in low-bandgap co-polymers for photovoltaics.

摘要

聚合物半导体的独特光学和电子特性通常源于经过精心设计的化学结构。这使得能够合成具有特定功能的共轭大分子,用于有机电子学。在光伏领域,供体-受体共聚物引起了相当大的兴趣,其链上交替具有不同电子亲和性的部分。低带隙提供了最佳的光捕获特性,并激发了对创纪录的功率转换效率的研究。在这里,我们首次展示了给体和受体部分的化学结构如何控制极化子对的光生成。我们表明,与均聚物(η=8%)相比,具有强受体的共聚物形成极化子对的产率高达初始光激发的 24%。π 共轭间隔物,将给体和受体的质心分开,具有增加复合时间的有益作用。研究结果为理解低带隙共聚物中极化子对的光生成提供了有用的信息,这对光伏应用非常重要。

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