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通过理论计算与实验时间分辨研究相结合,研究了双氢键光致变色席夫碱的光失活途径。

Photo-deactivation pathways of a double H-bonded photochromic Schiff base investigated by combined theoretical calculations and experimental time-resolved studies.

机构信息

Departament de Química, Universitat Autònoma de Barcelona, 08193 Bellaterra, Barcelona, Spain.

出版信息

Phys Chem Chem Phys. 2011 Sep 7;13(33):14960-72. doi: 10.1039/c1cp21039d. Epub 2011 Jul 14.

Abstract

The photophysics of N,N'-bis(salicylidene)-p-phenylenediamine (BSP) is analyzed both theoretically and experimentally. The alternative intramolecular proton-transfer reactions lead to three different tautomers. We performed DFT and TDDFT calculations to analyze the topography of the reactions connecting the three tautomers. Deactivation paths through a Conical Intersection (CI) region are also analyzed to explain the low fluorescence quantum yield of the phototautomers. The complex molecular structure of BSP provides a large number of deactivation paths, almost all of them energetically available following the initial photoexcitation. Femtosecond (fs) time-resolved emission studies in solution and flash photolysis experiments (nano to millisecond regime) were performed to get detailed information on the time domain of the full photocycle. The picture that emerges by combining theoretical and experimental results shows a very fast (less than 100 fs) photoinduced single proton transfer process leading to a phototautomer where a single proton has moved. This species may deactivate through a low-energy CI leading in about 20 ps to a rotameric form in the ground state that has a lifetime of several tens of microseconds in solution. This process competes with another deactivation path taking place prior to the proton-transfer reaction which involves a low-energy CI leading to a rotamer of the enol structure. In the flash photolysis studies, the rotamer of the enol structure was directly identified by the positive transient absorption band in the 250-260 nm and its lifetime in n-hexane (10 ms) is almost 3 orders of magnitude longer than the lifetime of the photochrome (around 40 μs). Our findings do not exclude a double proton transfer reaction in the excited enol form to give a tautomer in less than 100 fs during the first (impulsive) phase of the reaction which reverts back to the photoproducts of the simple proton transfer in 1-3 ps.

摘要

N,N'-双(水杨醛)-对苯二胺(BSP)的光物理性质进行了理论和实验分析。替代的分子内质子转移反应导致了三种不同的互变异构体。我们进行了 DFT 和 TDDFT 计算,以分析连接三种互变异构体的反应地形。还分析了通过锥形交叉(CI)区域的失活路径,以解释光致互变异构体的低荧光量子产率。BSP 的复杂分子结构提供了大量的失活途径,几乎所有途径在初始光激发后都具有能量。在溶液中进行飞秒(fs)时间分辨发射研究和闪光光解实验(纳秒到毫秒范围),以获取完整光循环的时域详细信息。通过将理论和实验结果相结合,可以得到一个非常快速(小于 100 fs)的光诱导单质子转移过程,该过程导致单质子发生移动的光致互变异构体。这种物质可以通过低能 CI 失活,在大约 20 ps 内导致基态中旋转异构形式,在溶液中的寿命为数十微秒。该过程与质子转移反应之前发生的另一个失活途径竞争,该途径涉及低能 CI 导致烯醇结构的旋转异构体。在闪光光解研究中,烯醇结构的旋转异构体通过在 250-260nm 处的正瞬态吸收带直接被识别,并且其在正己烷中的寿命(10ms)比光致变色的寿命(约 40μs)长约 3 个数量级。我们的研究结果并不排除在激发的烯醇形式中发生双质子转移反应,在反应的第一个(脉冲)阶段在不到 100fs 内给出互变异构体,该互变异构体在 1-3ps 内回复到简单质子转移的光产物。

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