Wong Natalie G K, Rankine Conor D, Dessent Caroline E H
Department of Chemistry, University of York, Heslington, York, YO10 5DD, U.K.
School of Natural and Environmental Sciences, Newcastle University, Newcastle-upon-Tyne, NE1 7RU, U.K.
J Phys Chem Lett. 2021 Mar 25;12(11):2831-2836. doi: 10.1021/acs.jpclett.1c00423. Epub 2021 Mar 15.
Understanding how deprotonation impacts the photophysics of UV filters is critical to better characterize how they behave in key alkaline environments including surface waters and coral reefs. Using anion photodissociation spectroscopy, we have measured the intrinsic absorption electronic spectroscopy (400-214 nm) and numerous accompanying ionic photofragmentation pathways of the benzophenone-4 anion ([BP4-H]). Relative ion yield plots reveal the locations of the bright S and S excited states. For the first time for an ionic UV filter, potential energy surfaces are presented to provide new insight into how the photofragment identity maps the relaxation pathways. These calculations reveal that [BP4-H] undergoes excited-state decay consistent with a statistical fragmentation process where the anion breaks down on the ground state after nonradiative relaxation. The broader relevance of the results in providing a basis for interpreting the relaxation dynamics of a wide range of gas-phase ionic systems is discussed.
了解去质子化如何影响紫外线过滤器的光物理性质对于更好地表征它们在包括地表水和珊瑚礁在内的关键碱性环境中的行为至关重要。利用阴离子光解离光谱,我们测量了二苯甲酮-4阴离子([BP4-H])的本征吸收电子光谱(400-214nm)以及众多伴随的离子光致碎片化途径。相对离子产率图揭示了明亮的S和S激发态的位置。首次为离子型紫外线过滤器展示了势能面,以提供关于光碎片特性如何映射弛豫途径的新见解。这些计算表明,[BP4-H]经历了与统计碎片化过程一致的激发态衰变,在此过程中阴离子在非辐射弛豫后在基态分解。讨论了这些结果在为解释各种气相离子系统的弛豫动力学提供基础方面的更广泛相关性。