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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Solid base catalysts: fundamentals and their applications in organic reactions
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Solid base catalysts: fundamentals and their applications in organic reactions

机译:固体碱催化剂:基本原理及其在有机反应中的应用

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摘要

Solid base catalysis studied over the last a half of century is reviewed briefly including mainly those performed in our laboratories. The review begins with advantages of solid base catalysts over homogeneous base catalyst in industrial use followed by definition of Bronsted base and Lewis base. The materials known as solid base catalysts are listed, and four reasons for which these materials are recognized as solid base catalyst are explained. For all solid base catalysts, variations in activity as a function of pretreatment temperature show a volcano shape; an incline with the temperature results from an appearance of basic sites by removal of water and carbon dioxide from the surface and a decline results from an elimination of basic sites by rearrangement of surface atoms. The reactions catalyzed by solid base catalysts can be classified into three types: double bond isomerization, addition of anion and proton to various double bonds, and alcohol decomposition. These are represented by 1-butene isomerization, hydrogenation of conjugated 1,3-butadiene and dehydration of 2-butanol. Their mechanisms are explained. In addition, bifunctional base-catalyzed reactions in which basic sites participate in one step of successive steps are exemplified for methyl isobutyl ketome synthesis, metathesis, Tishchenko reaction and side-chain alkylation of toluene. Some industrial processes and future perspectives are briefly described. (C) 2014 Elsevier B.V. All rights reserved.
机译:简要回顾了过去半个世纪研究的固体碱催化,主要包括在我们实验室中进行的固体碱催化。综述首先从固体碱催化剂在工业用途中优于均相碱催化剂的优势开始,然后是布朗斯台德碱和路易斯碱的定义。列出了被称为固体碱催化剂的材料,并解释了将这些材料识别为固体碱催化剂的四个原因。对于所有固体碱催化剂,活性随预处理温度的变化均表现出火山的形状。温度的升高是由于从表面除去水和二氧化碳而出现了碱性位,而下降是由于表面原子的重排消除了碱性位。固体碱催化剂催化的反应可分为三类:双键异构化,阴离子和质子加成到各种双键上以及醇分解。这些以1-丁烯异构化,共轭1,3-丁二烯的氢化和2-丁醇的脱水为代表。解释了它们的机制。另外,其中甲基位点参与连续步骤的一个步骤的双功能碱催化反应被举例说明用于甲基异丁基酮缩酮的合成,复分解,Tishchenko反应和甲苯的侧链烷基化。简要描述了一些工业过程和未来前景。 (C)2014 Elsevier B.V.保留所有权利。

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