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From the Cover: The retinal chromophore/chloride ion pair: Structure of the photoisomerization path and interplay of charge transfer and covalent states

机译:从封面开始:视网膜生色团/氯离子对:光异构化路径的结构以及电荷转移和共价态的相互作用

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摘要

Ab initio multireference second-order perturbation theory computations are used to explore the photochemical behavior of two ion pairs constituted by a chloride counterion interacting with either a rhodopsin or bacteriorhodopsin chromophore model (i.e., the 4-cis-γ-methylnona-2,4,6,8-tetraeniminium and all-trans-nona-2,4,6,8-tetraeniminium cations, respectively). Significant counterion effects on the structure of the photoisomerization paths are unveiled by comparison with the paths of the same chromophores in vacuo. Indeed, we demonstrate that the counterion (i) modulates the relative stability of the S0, S1, and S2 energy surfaces leading to an S1 isomerization energy profile where the S1 and S2 states are substantially degenerate; (ii) leads to the emergence of significant S1 energy barriers along all of the isomerization paths except the one mimicking the 11-cis → all-trans isomerization of the rhodopsin chromophore model; and (iii) changes the nature of the S1 → S0 decay funnel that becomes a stable excited state minimum when the isomerizing double bond is located at the center of the chromophore moiety. We show that these (apparently very different) counterion effects can be rationalized on the basis of a simple qualitative electrostatic model, which also provides a crude basis for understanding the behavior of retinal protonated Schiff bases in solution.
机译:从头算多参考二级扰动理论计算用于探索由氯反离子与视紫红质或细菌视紫红质生色团模型相互作用的两个离子对的光化学行为(即4-cis-γ-methylnona-2,4, 6,8-四烯属阳离子和全反式-壬二-2,4,6,8-四烯属阳离子。通过与真空中相同发色团的路径进行比较,揭示了对光异构化路径结构的重要抗衡离子效应。实际上,我们证明了抗衡离子(i)调节S0,S1和S2能量表面的相对稳定性,从而导致S1和S2态基本退化的S1异构化能谱; (ii)导致视紫红质生色团模型的11-顺式→全反式异构化的一个途径,沿着所有异构化途径出现了显着的S1能垒; (iii)改变S1→S0衰减漏斗的性质,当异构化双键位于生色团部分的中心时,它变成稳定的激发态最小值。我们显示,可以基于简单的定性静电模型合理化这些(显然非常不同的)抗衡离子效应,这也为理解视网膜质子化席夫碱在溶液中的行为提供了粗略的基础。

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