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桥对给体-桥-受体双自由基体系电子耦合贡献的光谱研究。

Spectroscopic studies of bridge contributions to electronic coupling in a donor-bridge-acceptor biradical system.

机构信息

Department of Chemistry and Chemical Biology, The University of New Mexico, Albuquerque, New Mexico 87131-0001, USA.

出版信息

J Am Chem Soc. 2012 May 9;134(18):7812-9. doi: 10.1021/ja300233a. Epub 2012 May 1.

Abstract

Variable-temperature electronic absorption and resonance Raman spectroscopies are used to probe the excited state electronic structure of Tp(Cum,Me)Zn(SQ-Ph-NN) (1), a donor-bridge-acceptor (D-B-A) biradical complex and a ground state analogue of the charge-separated excited state formed in photoinduced electron transfer reactions. Strong electronic coupling mediated by the p-phenylene bridge stabilizes the triplet ground state of this molecule. Detailed spectroscopic and bonding calculations elucidate key bridge distortions that are involved in the SQ(π)(SOMO) → NN-Ph (π*)(LUMO) D → A charge transfer (CT) transition. We show that the primary excited state distortion that accompanies this CT is along a vibrational coordinate best described as a symmetric Ph(8a) + SQ(in-plane) linear combination and underscores the dominant role of the phenylene bridge fragment acting as an electron acceptor in the D-B-A charge transfer state. Our results show the importance of the phenylene bridge in promoting (1) electron transfer in D-Ph-A systems and (2) electron transport in biased electrode devices that employ a 1,4-phenylene linkage. We have also developed a relationship between the spin density on the acceptor, as measured via the isotropic NN nitrogen hyperfine interaction, and the strength of the D → A interaction given by the magnitude of the electronic coupling matrix element, H(ab).

摘要

变温电子吸收和共振拉曼光谱用于探测 Tp(Cum,Me)Zn(SQ-Ph-NN)(1) 的激发态电子结构,Tp(Cum,Me)Zn(SQ-Ph-NN)(1) 是一个给体-桥-受体(D-B-A)双自由基络合物,也是光诱导电子转移反应中形成的电荷分离激发态的基态类似物。由对苯撑桥介导的强电子耦合稳定了该分子的三重态基态。详细的光谱和键合计算阐明了涉及 SQ(π)(SOMO)→NN-Ph(π*)(LUMO)D→A 电荷转移(CT)跃迁的关键桥扭曲。我们表明,伴随这种 CT 的主要激发态扭曲是沿着一个振动坐标,最好描述为对称的 Ph(8a)+SQ(面内)线性组合,并强调了苯撑桥片段作为 D-B-A 电荷转移态中的电子受体的主导作用。我们的结果表明,苯撑桥在促进(D-Ph-A)系统中的电子转移和在采用 1,4-苯撑连接的有偏置电极器件中的电子输运方面的重要性。我们还开发了一种关系,即通过各向同性 NN 氮超精细相互作用测量的受体上的自旋密度与 D→A 相互作用的强度之间的关系,该相互作用的强度由电子耦合矩阵元 H(ab)给出。

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