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通过在超碱性介质中原位还原元素硒制备的2,5-二取代硒吩荧光自猝灭中光诱导电子转移机制的证据。

Evidence of a Photoinduced Electron-Transfer Mechanism in the Fluorescence Self-quenching of 2,5-Substituted Selenophenes Prepared through In Situ Reduction of Elemental Selenium in Superbasic Media.

作者信息

de Salles Helena Domingues, Coelho Felipe Lange, Paixão Douglas Bernardo, Barboza Cristina Aparecida, da Silveira Rampon Daniel, Rodembusch Fabiano Severo, Schneider Paulo Henrique

机构信息

Instituto de Química, Departamento de Química Orgânica, Universidade Federal do Rio Grande do Sul (UFRGS), P.O. Box 15003, 91501-970 Porto Alegre, Rio Grande do Sul, Brazil.

Instituto de Química, Universidade Federal de Goiás (UFG), Campus Samambaia, 74690-900 Goaînia, Goiás, Brazil.

出版信息

J Org Chem. 2021 Aug 6;86(15):10140-10153. doi: 10.1021/acs.joc.1c00874. Epub 2021 Jul 20.

Abstract

A series of new 2,5-disubstituted selenophene derivatives are described from elemental selenium and 1,3-diynes in superbasic media. The activation of elemental selenium in a KOH/DMSO system allows cyclization with conjugated diynes at room temperature. The cyclization reaction is extended to a broad range of functional groups, for which photophysics were experimentally and theoretically investigated. The selenophene derivatives present absorption maxima in the UV-A region and fluorescence emission in the violet-to-blue region. Fluorescence decay profiles were obtained showing a monoexponential decay with fast fluorescence lifetimes (∼0.118 ns), as predicted by the Strickler-Berg relations. In general, in both investigations, no dependence on the solvent polarity on the absorption and emission maxima location was observed. On the other hand, solvents and substituents are shown to play a role in the fluorescence quantum yield values. In addition, a fluorescence self-quenching behavior could be observed, related to a photoinduced electron-transfer mechanism. Theoretical calculations performed at the MP2/ADC(2)/cc-pVDZ level of theory were performed in order to investigate the photophysical features of this series of selenophene derivatives.

摘要

本文描述了一系列在超碱性介质中由元素硒和1,3 - 二炔合成的新型2,5 - 二取代硒吩衍生物。在KOH/DMSO体系中,元素硒的活化使得其能在室温下与共轭二炔发生环化反应。该环化反应适用于多种官能团,对这些官能团的光物理性质进行了实验和理论研究。硒吩衍生物在UV - A区域呈现吸收最大值,在紫到蓝区域有荧光发射。如Strickler - Berg关系所预测的,获得的荧光衰减曲线显示为单指数衰减,荧光寿命较短(约0.118 ns)。总体而言,在这两项研究中,均未观察到吸收和发射最大值位置对溶剂极性有依赖性。另一方面,溶剂和取代基对荧光量子产率值有影响。此外,观察到了与光诱导电子转移机制相关的荧光自猝灭行为。为了研究该系列硒吩衍生物的光物理特性,在MP2/ADC(2)/cc - pVDZ理论水平上进行了理论计算。

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