Can Plasmon Change Reaction Path? Decomposition of Unsymmetrical Iodonium Salts as an Organic Probe / E. V. Milyutina (Miliutina), O. A. Guselnikova, N. S. Soldatova [et al.]

Уровень набора: Journal of Physical Chemistry LettersАльтернативный автор-лицо: Milyutina (Miliutina), E. V., chemical technologist, engineer of Tomsk Polytechnic University, 1991-, Elena Vadimovna;Guselnikova, O. A., chemist, engineer of Tomsk Polytechnic University, 1992-, Olga Andreevna;Soldatova, N. S., Nataljya Sergeevna;Bainova, P., Polina;Elashnikov, R., Roman;Fitl, P., Premysl;Kurten, T., Theo;Yusubov, M. S., chemist, Professor of Tomsk Polytechnic University, Doctor of chemical sciences, 1961-, Mekhman Suleiman-Ogly (Suleimanovich);Svorcik, V., Vaclav;Valiev, R. R., chemist, Assistant of Tomsk Polytechnic University, 1983-, Rashid Rinatovich;Chehimi, M. M., Mohamed Mehdi;Lyutakov, O., Oleksy;Postnikov, P. S., organic chemist, Associate Professor of Tomsk Polytechnic University, Candidate of chemical sciences, 1984-, Pavel SergeevichКоллективный автор (вторичный): Национальный исследовательский Томский политехнический университет, Исследовательская школа химических и биомедицинских технологий, (2017- )Язык: английский.Резюме или реферат: Plasmon-assisted transformations of organic compounds represent a novel opportunity for conversion of light to chemical energy at room temperature. However, the mechanistic insights of interaction between plasmon energy and organic molecules is still under debate. Herein, we proposed a comprehensive study of the plasmon-assisted reaction mechanism using unsymmetric iodonium salts (ISs) as an organic probe. The experimental and theoretical analysis allow us to exclude the possible thermal effect or hot electron transfer. We found that plasmon interaction with unsymmetrical ISs led to the intramolecular excitation of electron followed by the regioselective cleavage of C–I bond with the formation of electron-rich radical species, which cannot be explained by the hot electron excitation or thermal effects. The high regioselectivity is explained by the direct excitation of electron to LUMO with the formation of a dissociative excited state according to quantum-chemical modeling, which provides novel opportunities for the fine control of reactivity using plasmon energy..Аудитория: .Тематика: труды учёных ТПУ | электронный ресурс Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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Plasmon-assisted transformations of organic compounds represent a novel opportunity for conversion of light to chemical energy at room temperature. However, the mechanistic insights of interaction between plasmon energy and organic molecules is still under debate. Herein, we proposed a comprehensive study of the plasmon-assisted reaction mechanism using unsymmetric iodonium salts (ISs) as an organic probe. The experimental and theoretical analysis allow us to exclude the possible thermal effect or hot electron transfer. We found that plasmon interaction with unsymmetrical ISs led to the intramolecular excitation of electron followed by the regioselective cleavage of C–I bond with the formation of electron-rich radical species, which cannot be explained by the hot electron excitation or thermal effects. The high regioselectivity is explained by the direct excitation of electron to LUMO with the formation of a dissociative excited state according to quantum-chemical modeling, which provides novel opportunities for the fine control of reactivity using plasmon energy.

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