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Electronic State and Photophysics of 2-Ethylhexyl-4-methoxycinnamate as UV-B Sunscreen under Jet-Cooled Condition. | LitMetric

Electronic State and Photophysics of 2-Ethylhexyl-4-methoxycinnamate as UV-B Sunscreen under Jet-Cooled Condition.

J Phys Chem A

Department of Chemistry, Graduate School of Science , Hiroshima University, 1-3-1 Kagamiyama , Higashi-Hiroshima-shi , Hiroshima 739-8526 , Japan.

Published: February 2020

The title compound, 2-ethylhexyl-4-methoxycinnamate (2EH4MC), is known as a typical ingredient of sunscreen cosmetics that effectively converts the absorbed UV-B light to thermal energy. This energy conversion process includes the nonradiative decay (NRD): - isomerization and finally going back to the original structure with a release of thermal energy. In this study, we performed UV spectroscopy for jet-cooled 2EH4MC to investigate the electronic/geometrical structures as well as the NRD mechanism. Laser-induced-fluorescence (LIF) spectroscopy gave the well-resolved vibronic structure of the S-S transition; UV-UV hole-burning (HB) spectroscopy and density functional theory (DFT) calculations revealed the presence of and isomers, where the methoxy (-OCH) groups orient in opposite directions to each other. Picosecond UV-UV pump-probe spectroscopy revealed the NRD process from the excited singlet (S (ππ*)) state occurs at a rate constant of ∼10-10 s, attributed to internal conversion (IC) to the nπ* state. Nanosecond UV-deep UV (DUV) pump-probe spectroscopy identified a transient triplet (T (ππ*)) state, whose energy (from S) and lifetime are 18 400 cm and 20 ns, respectively. These results demonstrate that the photoisomerization of 2EH4MC includes multistep internal conversions and intersystem crossings, described as "S (, ππ*) → nπ* → T (ππ*) → S ()".

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http://dx.doi.org/10.1021/acs.jpca.9b11893DOI Listing

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