首页> 外文期刊>Chemistry Select >Double Bronsted Acidic Media Immobilized on Carbonized Sugarcane Bagasse (CSCB) as a New and Efficient Solid Acid Catalyst for the Synthesis of Coumarins, Dicoumarols and Xanthenes
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Double Bronsted Acidic Media Immobilized on Carbonized Sugarcane Bagasse (CSCB) as a New and Efficient Solid Acid Catalyst for the Synthesis of Coumarins, Dicoumarols and Xanthenes

机译:双重布隆酸性培养基固定在碳化甘蔗渣(CSCB)上,作为一种新的有效的固体酸催化剂,用于合成香豆素,dicoumarols和xanthenes

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摘要

This work is the first report on use of carbonized sugarcane bagasse as a carbon bed for a double Bronsted acidic ionic liquid for the synthesis of a new functionalized solid acid catalyst. Immobilization of hydrogen sulfate was performed from the reaction of 3-amino propyltriethoxysilane with carbonized bagasse and sulfonation of amine groups using sulfuric acid. Thus, ammonium hydrogen sulfate supported sugarcane bagasse (AHS@CSCB) was prepared. The catalyst (AHS@CSCB) was fully characterized by FT-IR, XRD, TGA, FE- SEM, elemental-mapping and EDX techniques. Also, the surface acidity of catalyst was studied by Hammett function. Catalytic properties of the synthesized catalyst were examined in the synthesis of coumarins, dicoumarols and dibenzoxanthenes. All of the products were obtained with high yields in short reaction times and solvent-free conditions and characterized with 1 H and 13 CNMR or previously reported products were examined by comparison with reported melting points. Some of the advantages of our method are simple preparation of catalyst and safe handling, very low cost of support and its abundance, high products yield, catalyst recyclability, solvent- free and easy workup.
机译:这项工作是关于将碳化甘蔗渣的使用作为碳床的首次报告,用于合成新的功能化固体催化剂的双重酸性离子液体。硫酸氢氢的固定是通过使用硫酸的3-氨基丙氧基氧基硅烷与碳化甘蔗的反应以及胺基化的硫酸反应。因此,制备了硫酸铵支持的甘蔗渣(AHS@cscb)。催化剂(ahs@cscb)以FT-IR,XRD,TGA,FE-SEM,Elemental-Mapping和EDX技术充分表征。同样,通过Hammett功能研究了催化剂的表面酸度。在香豆素,双乳糖和二苯并糖果的合成中检查了合成催化剂的催化特性。通过在短反应时间和无溶剂条件下以高收率获得所有产品,并通过与报道的熔点进行比较,以1 h和13 cnmr或先前报道的产品进行表征。我们方法的某些优点是简单准备催化剂和安全处理,支持成本非常低以及其丰度,高产品产量,催化剂可回收性,无溶剂的免费和易于工作。

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