首页> 外文期刊>Bulletin of the Korean Chemical Society >Photochemical Reactions of Saccharin-¥á-Silylamine Systems. Desilylmethylation of ¥á-Silylamine via Single Electron Transfer Pathway
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Photochemical Reactions of Saccharin-¥á-Silylamine Systems. Desilylmethylation of ¥á-Silylamine via Single Electron Transfer Pathway

机译:糖精-¥-甲硅烷基胺体系的光化学反应。单电子转移途径对¥-甲硅烷基胺的甲硅烷基甲基化

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Photochemical reactions of saccharin with tertiary amines were explored. Saccharin was found to undergo an acid-base reaction with N-trimethylsilylmethyl-N,N-diethyl amine to form N-trimethylsilylmethyl-N,N-diethyl ammonium saccharin salt which is in equilibrium with free saccharin and N-trimethylsilylmethyl-N,N-diethyl amine insolution. Photoreaction of N-trimethylsilylmethyl-N,N-diethyl ammonium saccharin in CH3OH or CH3CN results in the generation of desilylmethylated product, N,N-diethyl ammonium saccharin mainly along with benzamide. Photoreaction of N-methylsaccharin with N-trimethylsilylmethyl-N,N-diethyl amine in CH3OH leads to the production of o-(N-methylcarbamoyl)-N-ethylbenzenesulfonamid e as the major product along with N-methylbenzamide as the minor product. On the other hand, photoreaction of N,N,N-triethyl ammonium saccharin, generated from saccharin and triethylamine, produces N-methylbenzamide as the exclusive product. These photoreactions are quenched by oxygen indicating that triplets of saccharin and N-methylsaccharin are the reactive excited states. Based on the consideration of the redox potentials of saccharin and N-trimethylsilylmethyl-N,N-diethyl amine, and the nature of photoproducts, pathways involving initial triplet state single electron transfer are proposed for photoreactions of the saccharins with the メ-silylamine.
机译:研究了糖精与叔胺的光化学反应。发现糖精与N-三甲基甲硅烷基甲基-N,N-二乙胺发生酸碱反应,形成N-三甲基甲硅烷基甲基-N,N-二乙基铵糖精盐,其与游离糖精和N-三甲基甲硅烷基甲基-N,N平衡-二乙胺溶液。 N-三甲基甲硅烷基甲基糖精在CH3OH或CH3CN中的光反应导致脱甲硅烷基甲基化产物N,N-二乙基铵糖精主要与苯甲酰胺一起生成。 N-甲基糖精与N-三甲基甲硅烷基甲基-N,N-二乙胺在CH3OH中的光反应导致主要产物邻-(N-甲基氨基甲酰基)-N-乙基苯磺酰胺e与次要产物N-甲基苯甲酰胺一起产生。另一方面,由糖精和三乙胺生成的N,N,N-三乙基铵糖精的光反应生成N-甲基苯甲酰胺作为独家产品。这些光反应被氧淬灭,表明糖精和N-甲基糖精的三重态是反应性激发态。基于糖精和N-三甲基甲硅烷基甲基-N,N-二乙胺的氧化还原电势以及光产物的性质,提出了涉及初始三重态单电子转移的糖精与α-甲硅烷基胺的光反应途径。

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