Fish George C, Moreno-Naranjo Juan Manuel, Billion Andreas, Kratzert Daniel, Hack Erwin, Krossing Ingo, Nüesch Frank, Moser Jacques-E
Photochemical Dynamics Group, Institute of Chemical Sciences and Engineering, École polytechnique fédérale de Lausanne, Station 6, 1015 Lausanne, Switzerland.
Institut für Anorganische und Analytische Chemie, and Freiburger Materialforschungszentrum, Universität Freiburg, Albertstrasse 21, 79104 Freiburg, Germany.
Phys Chem Chem Phys. 2021 Oct 27;23(41):23886-23895. doi: 10.1039/d1cp03251h.
The mechanism of photoinduced symmetry-breaking charge separation in solid cyanine salts at the base of organic photovoltaic and optoelectronic devices is still debated. Here, we employ femtosecond transient absorption spectroscopy (TAS) to monitor the charge transfer processes occurring in thin films of pristine pentamethine cyanine (Cy5). Oxidized dye species are observed in Cy5-hexafluorophosphate salts upon photoexcitation, resulting from electron transfer from monomer excited states to H-aggregates. The charge separation proceeds with a quantum yield of 86%, providing the first direct proof of high efficiency intrinsic charge generation in organic salt semiconductors. The impact of the size of weakly coordinating anions on charge separation and transport is studied using TAS alongside electroabsorption spectroscopy and time-of-flight techniques. The degree of H-aggregation decreases with increasing anion size, resulting in reduced charge transfer. However, there is little change in carrier mobility, as despite the interchromophore distance increasing, the decrease in energetic disorder helps to alleviate the trapping of charges by H-aggregates.
基于有机光伏和光电器件的固体花菁盐中光致对称破缺电荷分离的机制仍存在争议。在此,我们采用飞秒瞬态吸收光谱(TAS)来监测在原始五甲川花菁(Cy5)薄膜中发生的电荷转移过程。光激发后,在Cy5 - 六氟磷酸盐盐中观察到氧化染料物种,这是由于电子从单体激发态转移到H - 聚集体所致。电荷分离的量子产率为86%,这为有机盐半导体中高效本征电荷产生提供了首个直接证据。使用TAS结合电吸收光谱和飞行时间技术研究了弱配位阴离子尺寸对电荷分离和传输的影响。随着阴离子尺寸的增加,H - 聚集程度降低,导致电荷转移减少。然而,载流子迁移率变化不大,因为尽管发色团间距离增加,但能量无序度的降低有助于减轻H - 聚集体对电荷的俘获。