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首页> 外文期刊>ChemCatChem >Chemoselective Synthesis of Dithioacetals from Bio-aldehydes with Zeolites under Ambient and Solvent-free Conditions
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Chemoselective Synthesis of Dithioacetals from Bio-aldehydes with Zeolites under Ambient and Solvent-free Conditions

机译:在环境和无溶剂条件下使用沸石的生物醛二缩醛的化学选择合成

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Dithioacetals are an important class of versatile compounds extensively applied in pharmaceuticals, separations, electrochemistry, and organic synthesis, but few heterogeneous catalytic systems are reported to be generally applicable for their synthesis from a wide range of substrates. A series of commercial and modified zeolites are excellent catalysts for thioacetalization of different thiols with carbonyl compounds, including biomass-derived aldehydes, at room temperature under solvent-free conditions. A near quantitative yield of dithioacetal was obtained over H-beta(19) at room temperature with a low catalyst to substrate ratio of 1: 19, and a method to follow the reaction progress by ex situ UV/Vis absorption analysis was demonstrated. Recycling experiments with H-beta(19) in five consecutive runs resulted in slight loss of activity, but the original activity could be fully restored after calcination at 550 degrees C. The results and physicochemical properties of the zeolites revealed that relatively large pores and moderate acidity with an appropriate distribution of Bronsted/Lewis acid sites contributed to the pronounced performance in the dithioacetal formation.
机译:二乙醛是一种重要的多种通用化合物,广泛应用于药物,分离,电化学和有机合成中,但据报道少数异质催化系统通常适用于它们从各种基材的合成。一系列商业和改性沸石是具有羰基化合物的不同硫醇的硫代乙醛的优异催化剂,包括在无溶剂条件下室温下的生物质衍生的醛。在室温下通过H-Beta(19)在室温下获得近定量产率,以低催化剂为1:19,并证实了通过实施原位UV / Vis吸收分析进行反应的方法。在连续5个运行中回收利用H-Beta(19)导致活性轻微丧失,但在550℃的煅烧后可以完全恢复原始活性。沸石的结果和物理化学特性显示出相对大的孔隙和中度具有适当分布的布朗斯特/路易斯酸部位的酸度有助于二缩醛形成的明显性能。

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