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富马酰胺链的多态光致弛豫和光异构化能力:一项计算与实验研究。

Multistate photo-induced relaxation and photoisomerization ability of fumaramide threads: a computational and experimental study.

作者信息

Altoè Piero, Haraszkiewicz Natalia, Gatti Francesco G, Wiering Piet G, Frochot Céline, Brouwer Albert M, Balkowski Grzegorz, Shaw Daniel, Woutersen Sander, Buma Wybren Jan, Zerbetto Francesco, Orlandi Giorgio, Leigh David A, Garavelli Marco

机构信息

Dipartimento di Chimica "G.Ciamician", Universita di Bologna, via Selmi 2, 40126 Bologna, Italy.

出版信息

J Am Chem Soc. 2009 Jan 14;131(1):104-17. doi: 10.1021/ja802531j.

Abstract

Fumaric and maleic amides are the photoactive units of an important and widely investigated class of photocontrollable rotaxanes as they trigger ring shuttling via a cis-trans photoisomerization. Here, ultrafast decay and photoinduced isomerization in isolated fumaramide and solvated nitrogen-substituted fumaramides (that are employed as threads in those rotaxanes) have been investigated by means of CASPT2//CASSCF computational and time-resolved spectroscopic techniques, respectively. A complex multistate network of competitive deactivation channels, involving both internal conversion and intersystem crossing (ISC) processes, has been detected and characterized that accounts for the picosecond decay and photochemical/photophysical properties observed in the singlet as well as triplet (photosensitized) photochemistry of fumaramides threads. Interestingly, singlet photochemistry appears to follow a non-Kasha rule model, where nonequilibrium dynamical factors control the outcome of the photochemical process: accessible high energy portions of extended crossing seams turn out to drive the deactivation process and ground-state recovery. Concurrently, extended singlet/triplet degenerate regions of twisted molecular structures with significant spin-orbit-coupling values account for ultrafast (picosecond time scale) ISC processes that lead to higher photoisomerization efficiencies. This model discloses the principles behind the intrinsic photochemical reactivity of fumaramide and its control.

摘要

富马酰胺和顺丁烯二酰胺是一类重要且被广泛研究的光控轮烷的光活性单元,因为它们通过顺反光异构化引发环穿梭。在此,分别通过CASPT2//CASSCF计算和时间分辨光谱技术研究了孤立的富马酰胺和溶剂化的氮取代富马酰胺(在那些轮烷中用作链)中的超快衰减和光诱导异构化。已检测并表征了一个复杂的多态竞争失活通道网络,该网络涉及内转换和系间窜越(ISC)过程,这解释了在富马酰胺链的单重态以及三重态(光敏化)光化学中观察到的皮秒衰减和光化学/光物理性质。有趣的是,单重态光化学似乎遵循非卡沙规则模型,其中非平衡动力学因素控制光化学过程的结果:扩展交叉缝中可及的高能部分被证明驱动失活过程和基态恢复。同时,具有显著自旋 - 轨道耦合值的扭曲分子结构的扩展单重态/三重态简并区域解释了导致更高光异构化效率的超快(皮秒时间尺度)ISC过程。该模型揭示了富马酰胺固有光化学反应性及其控制背后的原理。

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