首页> 外文期刊>Journal of molecular graphics & modelling >Exploring molecular structures, orbital interactions, intramolecular proton-transfer reaction kinetics, electronic transitions and complexation of 3-hydroxycoumarin species using DFT methods
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Exploring molecular structures, orbital interactions, intramolecular proton-transfer reaction kinetics, electronic transitions and complexation of 3-hydroxycoumarin species using DFT methods

机译:使用DFT方法探索3-羟基香豆素物种的分子结构,轨道相互作用,分子内质子转移反应动力学,电子跃迁和络合

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摘要

Optimal structures and electronic properties of various species of 3-hydroxycoumarin (3-HCou) have been explored using density functional theory (DFT) methods under polarizable continuum model (PCM) of solvation. Electron transfer from pyrone to benzene moieties is enhanced upon deprotonation. Anionic and radical species have similar orbital-interaction characteristics but the charges in the former are distributed more uniformly. The rate of intramolecular proton transfer for the neutral species increases many folds upon excitation. The HOMO-LUMO transition with π→π* character mainly accounts for the UV absorption of most 3-HCou species in solution. The wavelengths of maximal absorption predicted using TD-DFT method are in agreement with the previous experiment. For the charged species, calculations with the range-corrected functional yield better agreement with the previous experiment. Anionic 3-HCou species shows high degrees of complexation with chromium(III) and copper(II) compared with oxovanadium(IV) and zinc(II). Either oxovanadium(IV) or zinc(II) prefers forming two isomeric complexes with comparable degrees of formation.
机译:在溶剂化的可极化连续体模型(PCM)下,使用密度泛函理论(DFT)方法探索了各种3-羟基香豆素(3-HCou)的最佳结构和电子性质。在去质子化后,电子从吡喃酮向苯部分的转移得到增强。阴离子和自由基物质具有相似的轨道相互作用特性,但前者中的电荷分布更均匀。中性物质的分子内质子转移速率在激发时增加许多倍。具有π→π*特征的HOMO-LUMO跃迁主要解释溶液中大多数3-HCou物种的紫外线吸收。使用TD-DFT方法预测的最大吸收波长与先前的实验一致。对于带电物种,使用范围校正的功能进行的计算可以更好地与之前的实验相一致。与氧代钒(IV)和锌(II)相比,阴离子3-HCou物种与铬(III)和铜(II)的络合度高。氧钒(IV)或锌(II)都倾向于形成两种异构体,形成程度相当。

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