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设计偶氮苯衍生物以控制光异构化过程。

Engineering Azobenzene Derivatives to Control the Photoisomerization Process.

作者信息

Aleotti Flavia, Petropoulos Vasilis, Van Overeem Hannah, Pettini Michele, Mancinelli Michele, Pecorari Daniel, Maiuri Margherita, Medri Riccardo, Mazzanti Andrea, Preda Fabrizio, Perri Antonio, Polli Dario, Conti Irene, Cerullo Giulio, Garavelli Marco

机构信息

Dipartimento di Chimica Industriale "Toso Montanari", Università di Bologna, Viale del Risorgimento 4, 40136 Bologna, Italy.

Dipartimento di Fisica - Politecnico di Milano, Piazza Leonardo da Vinci 32, Milano 20133, Italy.

出版信息

J Phys Chem A. 2023 Dec 14;127(49):10435-10449. doi: 10.1021/acs.jpca.3c06108. Epub 2023 Dec 5.

Abstract

In this work, we show how the structural features of photoactive azobenzene derivatives can influence the photoexcited state behavior and the yield of the trans/cis photoisomerization process. By combining high-resolution transient absorption experiments in the vis-NIR region and quantum chemistry calculations (TDDFT and RASPT2), we address the origin of the transient signals of three poly-substituted push-pull azobenzenes with an increasing strength of the intramolecular interactions stabilizing the planar trans isomer (absence of intramolecular H-bonds, methyl, and traditional H-bond, respectively, for 4-diethyl-4'-nitroazobenzene, Disperse Blue 366, and Disperse Blue 165) and a commercial red dye showing keto-enol tautomerism involving the azo group (Sudan Red G). Our results indicate that the intramolecular H-bonds can act as a "molecular lock" stabilizing the trans isomer and increasing the energy barrier along the photoreactive CNNC torsion coordinate, thus preventing photoisomerization in the Disperse Blue dyes. In contrast, the involvement of the azo group in keto-enol tautomerism can be employed as a strategy to change the nature of the lower excited state and remove the nonproductive symmetric CNN/NNC bending pathway typical of the azo group, thus favoring the productive torsional motion. Taken together, our results can provide guidelines for the structural design of azobenzene-based photoswitches with a tunable excited state behavior.

摘要

在这项工作中,我们展示了光活性偶氮苯衍生物的结构特征如何影响光激发态行为以及反式/顺式光异构化过程的产率。通过结合可见-近红外区域的高分辨率瞬态吸收实验和量子化学计算(TDDFT和RASPT2),我们研究了三种多取代推拉偶氮苯的瞬态信号的起源,这三种偶氮苯分子内相互作用稳定平面反式异构体的强度逐渐增加(对于4-二乙基-4'-硝基偶氮苯、分散蓝366和分散蓝165,分别不存在分子内氢键、甲基和传统氢键),以及一种显示涉及偶氮基团的酮-烯醇互变异构的商业红色染料(苏丹红G)。我们的结果表明,分子内氢键可以作为一种“分子锁”,稳定反式异构体并增加沿光反应性CNNC扭转坐标的能垒,从而阻止分散蓝染料中的光异构化。相比之下,偶氮基团参与酮-烯醇互变异构可以作为一种策略来改变较低激发态的性质,并消除偶氮基团典型的非生产性对称CNN/NNC弯曲途径,从而有利于生产性扭转运动。综上所述,我们的结果可以为具有可调激发态行为的偶氮苯基光开关的结构设计提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ff8/10726365/37102aa8c5ee/jp3c06108_0001.jpg

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