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基于含时密度泛函理论研究 2-(2'-羟基苯基)苯并咪唑及其氨基衍生物的激发态势能面

TD-DFT study of the excited-state potential energy surfaces of 2-(2'-hydroxyphenyl)benzimidazole and its amino derivatives.

机构信息

Department of Chemistry, National Central University, Jhong-Li City, Tao-Yuan County 32001, Taiwan.

出版信息

J Phys Chem A. 2010 Apr 1;114(12):4065-79. doi: 10.1021/jp100022y.

Abstract

In this study, we used TD-PBE0 calculations to investigate the first singlet excited state (S(1)) behavior of 2-(2'-hydroxyphenyl)benzimidazole (HBI) and its amino derivatives. We employed the potential energy surfaces (PESs) at the S(1) state covering the normal syn, tautomeric (S(1)-T(syn)), and intramolecular charge-transfer (S(1)-T(ICT)) states in ethanol and cyclohexane to investigate the reaction mechanisms, including excited-state intramolecular proton transfer (ESIPT) and intramolecular charge-transfer (ICT) processes. Two new S(1)-T(ICT) states, stable in ethanol and cyclohexane, were found for HBI and its amino derivatives; they are twisted and pyramidalized. The flat PES of the ICT process makes the S(1)-T(ICT) states accessible. The S(1)-T(ICT) state is effective for radiationless relaxation, which is responsible for quenching the fluorescence of the S(1)-T(syn) state. In contrast to the situation encountered conventionally, the S(1)-T(ICT) state does not possess a critically larger dipole moment than its precursor, S(1)-T(syn) state; hence, it is not particularly stable in polar solvents. On the basis of the detailed PESs, we rationalize various experimental observations complementing previous studies and provide insight to understand the excited-state reaction mechanisms of HBI and its amino derivatives.

摘要

在这项研究中,我们使用 TD-PBE0 计算方法研究了 2-(2'-羟基苯基)苯并咪唑 (HBI)及其氨基衍生物的第一单重激发态 (S(1))行为。我们在乙醇和环己烷中研究了 S(1)态的势能面 (PESs),涵盖了正常顺式、互变异构体 (S(1)-T(syn))和分子内电荷转移 (S(1)-T(ICT))态,以研究反应机制,包括激发态分子内质子转移 (ESIPT)和分子内电荷转移 (ICT)过程。我们发现 HBI 和其氨基衍生物存在两个新的 S(1)-T(ICT)态,在乙醇和环己烷中是稳定的;它们是扭曲和三角锥形的。ICT 过程的平坦 PES 使得 S(1)-T(ICT)态是可及的。S(1)-T(ICT)态有效地进行无辐射松弛,这是猝灭 S(1)-T(syn)态荧光的原因。与传统情况下遇到的情况不同,S(1)-T(ICT)态的偶极矩并不比其前体 S(1)-T(syn)态大,因此在极性溶剂中并不特别稳定。基于详细的 PESs,我们解释了各种实验观察结果,补充了以前的研究,并提供了理解 HBI 和其氨基衍生物的激发态反应机制的见解。

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