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供体-桥-受体分子中桥长和溶剂依赖的电荷分离与复合过程

Bridge-Length- and Solvent-Dependent Charge Separation and Recombination Processes in Donor-Bridge-Acceptor Molecules.

作者信息

Kong Jie, Zhang Wei, Shao Jiang-Yang, Huo Dayujia, Niu Xinmiao, Wan Yan, Song Di, Zhong Yu-Wu, Xia Andong

机构信息

Beijing National Laboratory for Molecular Sciences (BNLMS), Key Laboratory of Photochemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.

University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

J Phys Chem B. 2021 Dec 9;125(48):13279-13290. doi: 10.1021/acs.jpcb.1c08308. Epub 2021 Nov 23.

Abstract

The photoinduced intramolecular charge separation (CS) and charge recombination (CR) phenomena in a series of donor-bridge-acceptor (D-B-A) molecules are intensively investigated as a means of understanding electron transport through the π-B. Pyrene (Pyr) and triarylamine (TAA) moieties connected via phenylene Bs of various lengths are studied because their CS and CR behaviors can be readily monitored in real time by femtosecond transient absorption (fs-TA) spectroscopy. By combining the steady-state and fs-TA spectroscopic measurements in a variety of solvents together with chemical calculations, the parameters that govern the CS behaviors of these dyads were obtained, such as the solvent effects on free energy and the B-length-dependent electronic coupling () between D and A. We observed the sharp switch of the CS behavior with the increase of the solvent polarity and B-linker lengths. Furthermore, in the case of the shortest distance between D and A when the electron coupling is sufficiently large, we observed that the CS phenomenon occurs even in low-polar solvents. Upon increasing the length of B, CS occurs only in strong polar solvents. The distance-dependent decay constant of the CS rate is determined as ∼0.53 Å, indicating that CS is governed by superexchange tunneling interactions. The CS rate constants are also approximately estimated using Marcus electron transfer theory, and the results imply that the value is the key factor dominating the CS rate, while the facile rotation of the phenylene B is important for modulating the lifetime of the charge-separated state in these D-B-A dyads. These results shed light on the practical strategy for obtaining a high CS efficiency with a long-lived CS state in TAA-B-Pyr derivatives.

摘要

作为理解电子通过π桥传输的一种手段,对一系列供体-桥-受体(D-B-A)分子中的光诱导分子内电荷分离(CS)和电荷复合(CR)现象进行了深入研究。研究了通过不同长度的亚苯基桥连接的芘(Pyr)和三芳基胺(TAA)部分,因为它们的CS和CR行为可以通过飞秒瞬态吸收(fs-TA)光谱很容易地实时监测。通过将各种溶剂中的稳态和fs-TA光谱测量与化学计算相结合,获得了控制这些二元体系CS行为的参数,如溶剂对自由能的影响以及D和A之间的B长度依赖性电子耦合()。我们观察到随着溶剂极性和B连接体长度的增加,CS行为发生了急剧转变。此外,在D和A之间距离最短且电子耦合足够大的情况下,我们观察到即使在低极性溶剂中也会发生CS现象。随着B长度的增加,CS仅在强极性溶剂中发生。CS速率的距离依赖性衰减常数确定为~0.53 Å,表明CS受超交换隧穿相互作用支配。还使用Marcus电子转移理论大致估算了CS速率常数,结果表明该值是主导CS速率的关键因素,而亚苯基B的容易旋转对于调节这些D-B-A二元体系中电荷分离态的寿命很重要。这些结果为在TAA-B-Pyr衍生物中获得具有长寿命CS态的高CS效率的实际策略提供了启示。

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