首页> 外文期刊>Journal of Dispersion Science and Technology >Studies on chemical reactions in microemulsion media (I) Hydrolysis kinetics studies in microemulsion system for CTAB-butanol/25%n-octane/water
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Studies on chemical reactions in microemulsion media (I) Hydrolysis kinetics studies in microemulsion system for CTAB-butanol/25%n-octane/water

机译:微乳液介质中化学反应的研究(I)CTAB /正丁醇/ 25%正辛烷/水的微乳液体系中的水解动力学研究

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In this manuscript, Aspirin and 2,4-dinitrochlorobenzene were used as substrates of hydrolysis reactions. The hydrolysis kinetics of the two substrates in microemulsion system for CTAB-butanol/25%n-octane/water was studied by using UV method, and the mechanism of the hydrolysis in different microemulsion media, especial the one of aspirin, was discussed. All experimental results showed that the hydrolysis reaction was extremely affected by the structures and the structural transitions of microemulsions. The hydrolysis rates are higher in the water in Oil(W/O) microemulsion media and decrease with the addition of water, in bicontinuous(B.C.), they increase with the addition of water, and decrease in the oil in water(O/W) The transition points of the hydrolysis rates occurred just at structural transition points from W/O to B.C. in the microemulsions and from B.C. to O/W. The phenomenon was considered to be caused by the different hydrolysis mechanisms in the different microemulsion media and the change of the polarity in "the interfacial films" of microemulsions. The aim of the investigation is to establish what is the connection between the structures of microemulsions and the hydrolysis rates. [References: 18]
机译:在该手稿中,阿司匹林和2,4-二硝基氯苯用作水解反应的底物。采用紫外光法研究了CTAB /正丁醇/ 25%正辛烷/水微乳液体系中两种底物的水解动力学,并探讨了在不同微乳液介质中水解的机理,特别是阿司匹林。 。所有实验结果表明,水解反应受到微乳液的结构和结构转变的极大影响。在油(W / O)微乳液介质中,水的水解速率较高,而在添加水时,水解速率降低;在双连续(BC)中,水解率随水的添加而提高,而在水(O / W)中的油降低)水解速率的转变点恰好发生在从W / O到BC的结构转变点在微乳液中和从B.C.到O / W。该现象被认为是由于在不同的微乳液介质中的不同的水解机理和微乳液的“界面膜”中极性的改变引起的。研究的目的是建立微乳液结构与水解速率之间的联系。 [参考:18]

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