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对 UV 滤光剂 homosalate 的光保护机制的深入了解。

Insights into the photoprotection mechanism of the UV filter homosalate.

机构信息

Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, UK.

出版信息

Phys Chem Chem Phys. 2020 Jul 21;22(27):15509-15519. doi: 10.1039/d0cp02610g. Epub 2020 Jun 30.

Abstract

Homosalate (HMS) is a salicylate molecule that is commonly included within commercial sunscreen formulations to provide protection from the adverse effects of ultraviolet (UV) radiation exposure. In the present work, the mechanisms by which HMS provides UV photoprotection are unravelled, using a multi-pronged approach involving a combination of time-resolved ultrafast laser spectroscopy in the gas-phase and in solution, laser-induced fluorescence, steady-state absorption spectroscopy, and computational methods. The unique combination of these techniques allow us to show that the enol tautomer of HMS undergoes ultrafast excited state intramolecular proton transfer (ESIPT) upon photoexcitation in the UVB (290-320 nm) region; once in the keto tautomer, the excess energy is predominantly dissipated non-radiatively. Sharp transitions are observed in the LIF spectrum at close-to-origin excitation energies, which points towards the potential presence of a second conformer that does not undergo ESIPT. These studies demonstrate that, overall, HMS exhibits mostly favourable photophysical characteristics of a UV filter for inclusion in sunscreen formulations.

摘要

胡莫柳酯(HMS)是一种水杨酸酯分子,通常包含在商业防晒霜配方中,以提供对紫外线(UV)辐射暴露的不良影响的保护。在本工作中,采用涉及气相和溶液中时间分辨超快激光光谱学、激光诱导荧光、稳态吸收光谱学和计算方法相结合的多管齐下的方法,揭示了 HMS 提供 UV 光保护的机制。这些技术的独特组合使我们能够表明 HMS 的烯醇互变异构体在 UVB(290-320nm)区域的光激发下经历超快的激发态分子内质子转移(ESIPT);一旦变成酮式互变异构体,多余的能量主要是非辐射耗散。在接近起源的激发能量下,在 LIF 光谱中观察到尖锐的跃迁,这表明可能存在不经历 ESIPT 的第二种构象。这些研究表明,总体而言,HMS 表现出大多数有利的光物理特性,是防晒霜配方中包含的 UV 过滤器。

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