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Investigation of different photochemical reactions of avobenzone derivatives by ultrafast transient absorption spectroscopy

机译:通过超快瞬态吸收光谱研究雪卵衍生物不同光化学反应的研究

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摘要

Avobenzone (AB) is one of the most widely used UVA sunscreens, and it is viewed as a model compound for studying the photoisomerization process. In recent years, Miranda and co-workers studied photophysical and photochemical reactions of several AB derivatives. However, there is still a gap in the data of these compounds in the ultrafast time region. To get a better understanding of the photophysical and photochemical reaction mechanisms, selected AB derivatives of AB-Me, AB-Pr, AB-Br and AB-Cl were studied using ultrafast transient absorption spectroscopy and density functional theory calculations in the present study. It is unravelled that alkylated substituted AB compounds of AB-Me and AB-Pr exhibit an efficient intersystem crossing with the generation of the corresponding triplet state species, which further leads to the Norrish type II reaction for AB-Pr. On the other hand, AB-Br and AB-Cl prefer photochemical reactions via the singlet state surface. Based on the DFT calculations, the spin-orbit coupling constant between the singlet and triplet states, the energy difference between the singlet and triplet states and the natural transition orbital separations of the studied AB compounds were found to be the leading reasons accounting for their corresponding photochemical activities via singlet and triplet states.
机译:阿维虫酮(AB)是最广泛使用的UVA防晒霜之一,它被视为用于研究光学化过程的模型化合物。近年来,米兰达和同事研究了几种AB衍生物的光物理和光化学反应。然而,超快时间区域的这些化合物的数据仍然存在间隙。为了更好地理解光学和光化学反应机制,使用本研究中的超快瞬态吸收光谱和密度泛函理论计算研究了AB-ME,AB-PR,AB-BR和AB-CL的选择AB衍生物。它被解开的是,AB-ME和AB-PR的烷基化取代的AB化合物与相应的三重态物种的产生具有有效的跨越式交叉,其进一步导致AB-PR的氏虫II反应。另一方面,AB-BR和AB-CL通过单线态表面优选光化学反应。基于DFT计算,单态和三联状态之间的旋转轨道耦合常数,单态和三重态态之间的能量差异以及所研究的AB化合物的自然过渡轨道分离是核对它们对应的主要原因通过单线和三联状态的光化学活动。

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