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基于计算化学的蒽基自由基连接的π共轭自旋体系多自旋激发态的理论研究。

Theoretical investigation of multi-spin excited states of anthracene radical-linked π-conjugated spin systems by computational chemistry.

作者信息

Kato Ken, Teki Yoshio

机构信息

Institute for Protein Research, Osaka University, 3-2 Yamadaoka, Suita-shi, Osaka 565-0871, Japan.

Graduate School of Science, Osaka City University, 3-3-138 Sugimoto, Sumiyoshi-ku, Osaka 558-8585, Japan.

出版信息

Phys Chem Chem Phys. 2024 Mar 6;26(10):8106-8114. doi: 10.1039/d3cp06335f.

Abstract

Multi-spin excited states of chromophore radical-linked π-conjugated spin systems are investigated by molecular orbital calculations based on density functional theory (DFT). The investigated systems consist of an anthracene photosensitive unit leading to a triplet-excited-state ( = 1), π-conjugated linker to propagate spin exchange-coupling, and stable organic radical with a doublet-ground-state ( = 1/2). The intramolecular exchange coupling (), value, and fine-structure interaction of their excited states depended on the π-conjugation network (π-topology), type of radical, and molecular structure of the π-linker (length and dihedral angle). The exchange interaction was dependent on the π-topology and the type of radical species. A decrease in the dihedral angle between the anthracene moiety and phenyl linker in the photo-excited state led to larger exchange coupling. With an increase in the π-linker length (), the magnitude of the exchange coupling gradually decreased in the photoexcited states according to = Ex0 exp(-), similar to the ground-state exchange. The values of the quartet (Q) state depended only on the radical type (independent of the linker). Conversely, the fine-structure interaction of the Q state was independent of the radical type and depended on both the linker length and the dihedral angle.

摘要

基于密度泛函理论(DFT)的分子轨道计算研究了发色团自由基连接的π共轭自旋体系的多自旋激发态。所研究的体系由一个导致三重态激发态(S = 1)的蒽光敏单元、用于传播自旋交换耦合的π共轭连接体以及具有双重基态(S = 1/2)的稳定有机自由基组成。其激发态的分子内交换耦合(J)、S值和精细结构相互作用取决于π共轭网络(π拓扑)、自由基类型以及π连接体的分子结构(长度和二面角)。交换相互作用取决于π拓扑和自由基种类。光激发态下蒽部分与苯基连接体之间二面角的减小导致更大的交换耦合。随着π连接体长度(L)的增加,光激发态下交换耦合的大小根据J = J0 exp(-L/λ)逐渐减小,类似于基态交换。四重态(Q)态的S值仅取决于自由基类型(与连接体无关)。相反,Q态的精细结构相互作用与自由基类型无关,并且取决于连接体长度和二面角。

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