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利用质子耦合电子转移实现氮杂芳烃的氢化:喹喔啉衍生物在甲醇中的光化学

Harnessing Proton-Coupled Electron Transfer for Hydrogenation of Aza-Arenes: Photochemistry of Quinoxaline Derivatives in Methanol.

作者信息

Morawski Olaf W, Gawryś Paweł, Sobolewski Andrzej L

机构信息

Institute of Physics, Polish Academy of Sciences, Al. Lotników 32/46, 02-668 Warsaw, Poland.

出版信息

J Phys Chem A. 2023 Oct 26;127(42):8871-8881. doi: 10.1021/acs.jpca.3c05077. Epub 2023 Oct 16.

Abstract

Three quinoxaline derivatives are investigated both experimentally and theoretically to assess their ability for the methanol oxidation and harvesting of hydrogen. In inert solvents, the nonplanar compounds exhibit very weak fluorescence from the lowest excited singlet state, whereas the planar and rigid chromophore emits non-Kasha fluorescence from the S(ππ*) state despite the proximity of the S(nπ*) state. In methanol, hydrogen-bonded complexes with solvent molecules are formed, and in all chromophores, the lowest singlet state is populated after excitation of the S(ππ*) state. The switch from non-Kasha emission of the planar compound in inert solvents to regular emission in methanol is related to reduced symmetry of the hydrogen-bonded complex with methanol which results in effective mixing of ππ* and nπ* states and fast internal conversion to the lowest excited singlet state. The S(nπ*) state of the hydrogen-bonded complex has charge-transfer character, and for all compounds in methanol, hydrogen transfer to the chromophore is observed. The chromophores retain the transferred hydrogen atoms, serving both as photocatalysts and as hydrogen storage materials. Undesired dark side reactions that occur are also discussed.

摘要

对三种喹喔啉衍生物进行了实验和理论研究,以评估它们氧化甲醇和收集氢气的能力。在惰性溶剂中,非平面化合物从最低激发单重态发出非常微弱的荧光,而平面且刚性的发色团尽管S(nπ*)态很近,但从S(ππ*)态发出非卡莎荧光。在甲醇中,会形成与溶剂分子的氢键复合物,并且在所有发色团中,S(ππ*)态激发后最低单重态被占据。平面化合物在惰性溶剂中的非卡莎发射到在甲醇中的规则发射的转变与与甲醇形成的氢键复合物对称性降低有关,这导致ππ和nπ态有效混合以及快速内转换到最低激发单重态。氢键复合物的S(nπ*)态具有电荷转移特性,并且对于甲醇中的所有化合物,均观察到氢转移至发色团。发色团保留转移的氢原子,既作为光催化剂又作为储氢材料。还讨论了发生的不期望的暗反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4701/10614181/cf613ae16da2/jp3c05077_0001.jpg

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