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5-甲氧基吲哚的构象变化:热、振动和电子激发的影响

Conformational Changes in 5-Methoxyindole: Effects of Thermal, Vibrational, and Electronic Excitations.

作者信息

Lopes Jesus A J, Fausto R, Reva I

机构信息

CQC, Department of Chemistry, University of Coimbra , 3004-535 Coimbra, Portugal.

CQC, Faculty of Pharmacy, University of Coimbra , 3004-295 Coimbra, Portugal.

出版信息

J Phys Chem A. 2017 May 11;121(18):3372-3382. doi: 10.1021/acs.jpca.7b01713. Epub 2017 Apr 27.

Abstract

The molecule of 5-methoxyindole (5MOI) may adopt two conformational states, syn and anti, with respect to the relative orientation of the NH and OCH groups. The structure of monomeric 5MOI was characterized spectroscopically, in mid- and near-infrared domains. The conformational composition of 5MOI could be controlled in three different ways. Thermally, two conformers of 5MOI could be trapped in xenon matrixes at 16 K. Upon annealing the xenon matrix to temperatures about 30-40 K, the higher-energy syn form converted to the ground-state anti conformer. Vibrational excitations in the near-infrared domain, at the frequency of the first NH stretching overtone, 6853 cm, afforded the inverse conformational transformation, and a part of the anti conformer was upconverted to the syn form. Electronic excitations in the UV domain, at 315-310 nm, resulted in a total consumption of the syn form again, in favor of anti. Upon further irradiations at 308 nm, a partial repopulation of the syn form, at the expense of anti, was observed. We propose a mechanistic explanation of the observed transformations, which is based on computations of the vibrational spectra of the two conformers and also on computations of the ground state S and the first excited state S potential energy surfaces along the coordinate for conformational isomerization. The highlights of the present work are the first experimental observation of the minor syn conformer of 5MOI, evidence of the long-range vibrational energy transfer resulting in conformational isomerization upon excitation of the NH stretching overtone, and the possibility of partial conformational control of 5MOI by using electronic excitations.

摘要

5-甲氧基吲哚(5MOI)分子相对于NH和OCH基团的相对取向可能呈现两种构象状态,即顺式(syn)和反式(anti)。单体5MOI的结构通过中红外和近红外光谱进行了表征。5MOI的构象组成可以通过三种不同方式进行控制。热控制方面,5MOI的两种构象异构体可以在16K的氙基质中被捕获。将氙基质退火至约30 - 40K的温度时,高能的顺式构象会转变为基态反式构象。在近红外区域,以第一个NH伸缩倍频6853cm的频率进行振动激发,会产生反向构象转变,一部分反式构象体会上转换为顺式构象。在紫外区域315 - 310nm进行电子激发,会再次导致顺式构象完全消耗,转而有利于反式构象。在308nm进一步照射时,观察到以反式构象为代价的顺式构象部分重新出现。我们基于对两种构象异构体振动光谱的计算以及沿构象异构化坐标对基态S和第一激发态S势能面的计算,对观察到的转变提出了一种机理解释。本工作的亮点包括首次对5MOI的次要顺式构象异构体进行实验观测、NH伸缩倍频激发导致构象异构化的远程振动能量转移的证据,以及利用电子激发对5MOI进行部分构象控制的可能性。

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