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Reaction kinetics of the reaction of terephthalic acid and ethylene carbonates

机译:对苯二甲酸和碳酸乙烯酯反应动力学

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AbstractThe kinetics of the reaction of terephthalic acid with a number of ethylene carbonates in the presence of an amine catalyst were examined. All reactions apparently follow first‐order kinetics; therefore, the solution rate of TPA is not rate‐limiting. With minor adjustments, the mechanism appears to be in accord with that of the model reaction of benzoic acid and ethylene carbonate previously reported. Attack of the carboxylate on the carbonate ring must be the rate‐limiting step. Substituent effects (owing to substituents on the carbonate ring) appear to be mostly steric in nature; surprisingly, ann‐octyl group causes the slowest reaction. Besides being strongly influenced by steric hinderance, the transition state appears to be highly polar. Activation energy (16.0 kcal/mol) and activation entropy (−23.6 cal/deg) are very similar to those of the model
机译:摘要 研究了对苯二甲酸与多种碳酸乙烯酯在胺催化剂存在下的反应动力学。所有反应显然都遵循一级动力学;因此,TPA的溶解率没有速率限制。通过微小的调整,其机理似乎与先前报道的苯甲酸和碳酸乙烯酯的模型反应一致。羧酸盐对碳酸盐环的攻击必须是限速步骤。取代基效应(由于碳酸盐环上的取代基)似乎主要是空间性的;令人惊讶的是,Ann-Octyl基团引起的反应最慢。除了受到空间位阻的强烈影响外,过渡态似乎具有高度极性。活化能(16.0 kcal/mol)和活化熵(-23.6 cal/deg)与模型非常相似

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