Vandewal Koen
Institut für Angewandte Photophysik, Technische Universität Dresden, 01062, Dresden, Germany; email:
Annu Rev Phys Chem. 2016 May 27;67:113-33. doi: 10.1146/annurev-physchem-040215-112144. Epub 2016 Mar 3.
Intermolecular charge transfer (CT) states at the interface between electron-donating (D) and electron-accepting (A) materials in organic thin films are characterized by absorption and emission bands within the optical gap of the interfacing materials. CT states efficiently generate charge carriers for some D-A combinations, and others show high fluorescence quantum efficiencies. These properties are exploited in organic solar cells, photodetectors, and light-emitting diodes. This review summarizes experimental and theoretical work on the electronic structure and interfacial energy landscape at condensed matter D-A interfaces. Recent findings on photogeneration and recombination of free charge carriers via CT states are discussed, and relations between CT state properties and optoelectronic device parameters are clarified.
有机薄膜中供电子(D)材料与吸电子(A)材料界面处的分子间电荷转移(CT)态,其特征在于界面材料光学带隙内的吸收带和发射带。对于某些D - A组合,CT态能有效地产生电荷载流子,而其他组合则表现出高荧光量子效率。这些特性被应用于有机太阳能电池、光电探测器和发光二极管。本综述总结了关于凝聚态D - A界面处电子结构和界面能量分布的实验和理论研究工作。讨论了通过CT态产生和复合自由电荷载流子的最新发现,并阐明了CT态特性与光电器件参数之间的关系。