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首页> 外文期刊>Beilstein journal of organic chemistry. >Regioselectively α- and β-alkynylated BODIPY dyes via gold(I)-catalyzed direct C–H functionalization and their photophysical properties
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Regioselectively α- and β-alkynylated BODIPY dyes via gold(I)-catalyzed direct C–H functionalization and their photophysical properties

机译:通过金(I)的区域α-和β-醇烷基化BOBIPY染料 - 催化直接C-H官能化及其光学性质

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A series of α- and β-ethynyl-substituted BODIPY derivatives (3a, 4a, 5a, 5b, 6a, 6b) were synthesized by gold(I)-catalyzed direct C–H alkynylation reactions of dipyrromethane and BODIPY, respectively, with ethynylbenziodoxolone (EBX) in a regioselective manner. Depending on the position of the ethynyl substituent in the BODIPY skeleton, the photophysical properties of the resulting α- and β-substituted BODIPYs are notably altered. The lowest S0–S1 transition absorbance and fluorescence bands are both bathochromically shifted as the number of substituents increases, while the emission quantum yields of the β-ethynylated derivatives are significantly lower than those of α-ethynylated ones. The current method should be useful for fine-tuning of the photophysical properties of BODIPY dyes as well as for constructing BODIPY-based building cores for functional π-materials.
机译:通过金(I)合成一系列α-和β-乙炔基取代的BOBIPY衍生物(3a,4a,5a,5b,6a,6b) - 催化二甲烷和bodipy的直接C-H alkynynation反应,与乙炔基苯并苯甲酮(EBX)以区域选择性的方式。根据Bodipy骨架中的乙炔基取代基的位置,显着改变所得α-和β-取代的Bodipys的光学性质。随着取代基的数量增加,最低S0-S1过渡吸光度和荧光带均在碱基转移,而β-乙炔化衍生物的排放量子产率显着低于α-乙炔化的衍生物。目前的方法应该用于微调Bodipy染料的光物理性质以及构建基于Bodipy的构建芯,用于功能π材料。

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