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A “waiting” carbon nitride radical anion: a charge storage material and key intermediate in direct C–H thiolation of methylarenes using elemental sulfur as the “S”-source

机译:一种“等待中的”氮化碳自由基阴离子:一种电荷存储材料和甲基芳烃直接C–H硫醇化的关键中间体,使用元素硫作为“ S”源

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Potassium poly(heptazine imide), a carbon nitride based semiconductor with high structural order and a valence band potential of +2.2 V vs. NHE, in the presence of hole scavengers and under visible light irradiation gives the corresponding polymeric radical anion, in which the specific density of unpaired electrons reaches 112 μmol g ~(?1) . The obtained polymeric radical anion is stable under anaerobic conditions for several hours. It was characterized using UV-vis absorption, time resolved and steady state photoluminescence spectra. The electronic structure of the polymeric radical anion was confirmed by DFT cluster modelling. The unique properties of potassium poly(heptazine imide) for storing charges were employed in visible light photocatalysis. A series of substituted dibenzyldisulfanes was synthesized in 41–67% yield from the corresponding methylarenes via cleavage of the methyl C–H bond under visible light irradiation and metal-free conditions.
机译:在有空穴清除剂存在和可见光照射下,聚庚庚酸钾(一种基于碳氮化物的半导体,具有高结构序,价带电势比NHE高),+ 2.2 V vs. NHE,得到相应的聚合自由基阴离子,其中不成对电子的比密度达到112μmolg〜(?1)。所得的聚合自由基阴离子在厌氧条件下稳定数小时。使用紫外可见吸收,时间分辨和稳态光致发光光谱对其进行表征。聚合自由基阴离子的电子结构通过DFT团簇建模得到证实。聚庚庚二酰亚胺钾用于存储电荷的独特性质被用于可见光光催化中。在可见光辐射和无金属条件下,通过裂解甲基C–H键,可以从相应的甲基芳烃中以41–67%的产率合成一系列取代的二苄基二硫烷。

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