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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Role of the omega phase in the analysis and intensification of solid-liquid phase-transfer-catalyzed reactions
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Role of the omega phase in the analysis and intensification of solid-liquid phase-transfer-catalyzed reactions

机译:Ω相在固相转移催化反应的分析和强化中的作用

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摘要

Although phase-transfer catalysis (PTC) is a mature discipline, several intricacies of PTC in reactions of industrial importance are not understood or properly modeled. For instance, the effect of the nature and number of phases on the intensification of rates and selectivities has not been investigated in detail. this study deals with-the efficacy of the so-called omega phase, which is a small quantity of aqueous phase in a solid reactant-organic liquid reaction involving PTC, in intensification of the rates of the cyanide displacement reaction on p-chlorobenzyl chloride, with special emphasis on the kinetic and modeling aspects. As the reaction proceeds, the process converts itself from a S-(reagent)-L-(w)-L-(org) into a L-(w)-L-(org) PTC system. This paper gives a complete theoretical and experimental analysis of the role of the w-phase in enhancing the rates of the reaction and the importance of the L(w)-L(or,) PTC system with a phase ratio divergent from that of the normal L-(aq)-L-(org) PTC system. [References: 13]
机译:尽管相转移催化(PTC)是一门成熟的学科,但对具有重要工业意义的反应中PTC的一些复杂性仍未了解或未正确建模。例如,尚未详细研究相的性质和数目对速率和选择性增强的影响。这项研究针对的是所谓的欧米茄相(omega phase)在涉及PTC的固态反应物-有机液体反应中少量水相在增强对氯苄基氯上氰化物置换反应速率方面的功效,特别强调动力学和建模方面。随着反应的进行,该过程将自身从S-(试剂)-L-(w)-L-(org)转换为L-(w)-L-(org)PTC系统。本文对w相在提高反应速率中的作用以及L(w)-L(or)PTC系统的相比不同于液相的比率进行了完整的理论和实验分析。普通的L-(aq)-L-(org)PTC系统。 [参考:13]

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