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Sulfonylation reactions photocatalyzed by quantum dots: rule of band-position and surface chemistry

机译:量子点光催化的磺酰化反应:能带位置和表面化学规则

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摘要

An environmentally friendly methodology for the synthesis of different functionalized sulfones is described here. Quantum dots (QDs) of cysteamine (Cys) or 3-mercaptopropionic acid (MPA) capped cadmium chalcogenides (CdY, Y = S, Se, Te) were used as photocatalyst (UV, λ = 365 nm) for sulfonylation reactions. The reaction between benzyl bromide and sodium p-toluenesulfinate was used to determine the ideal experimental conditions, where CdSe–Cys presented the best photocatalytic activity, and the sulfonylation product was isolated in 4% to 92% yields. The optimized reaction conditions were then applied on reactions of benzyl, allyl, alkyl, aryl halides and α-bromoesters using different sodium salts of sulfinic acids and the products where obtained in a 57% to 99% yield range after 2 to 8 hours. A mechanism proposal involves the simultaneous reduction/oxidation of the reagents by the exciton generated by photoexcitation of the QDs. The photocatalytic activity of the QDs was estimated by analysis of the conduction/valence band energies and correlated with LUMO/HOMO energies of the reagents. Cyclic voltammetry was used as an analytical tool.
机译:一个环保的方法合成不同的功能化砜类这里描述。(半胱氨酸)或3-mercaptopropionic酸(MPA)封顶镉硫属化合物(CdY, Y = S, Te)作为光催化剂(UV,λ= 365海里)sulfonylation反应。溴化苄和钠p-toluenesulfinate用于确定理想的实验条件,CdSe-Cys呈现最好的光催化活性,sulfonylation产品被隔离在4%到92%的收益率。优化反应条件被应用苄反应,烯丙基、烷基、芳基卤化物和α-bromoesters使用不同钠sulfinic酸盐和产品获得57%到99%的收益率范围在2 - 8个小时。同时还原/氧化试剂的光致激发所产生的激子量子点的。估计的分析导电/价带能量和关联试剂的LUMO / HOMO能量。伏安法是作为一种分析工具。

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