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六甲基二硅氮烷与气相法白炭黑表面反应的机理和动力学

Mechanism and Kinetics of Hexamethyldisilazane Reaction with a Fumed Silica Surface.

作者信息

Gun'ko VM, Vedamuthu MS, Henderson GL, Blitz JP

机构信息

Institute of Surface Chemistry, 31 Prospect Nauki, Kiev, 252022, Ukraine

出版信息

J Colloid Interface Sci. 2000 Aug 1;228(1):157-170. doi: 10.1006/jcis.2000.6934.

Abstract

Quantum chemical calculations of the reaction of hexamethyldisilazane with silica indicates a two-step mechanism. The first, rate-determining step results in trimethylsilylation of a surface silanol and formation of trimethylaminosilane. The second step involves reaction of a trimethylaminosilane reactive intermediate to form a trimethylsilyl surface species and ammonia. This two-step mechanism was applied to analyze data of the kinetics of hexamethyldisilazane reaction with fumed silica using custom interactive software. Both the extent of surface reaction and the loss of hexamethyldisilazane from toluene solution were monitored by FT-IR spectroscopy as a function of time. Data analysis indicates that under the conditions studied the reaction is adsorption rate limited. The entire reaction can be explained in terms of reaction with non-hydrogen-bonded surface silanols, though hydrogen-bonded silanols act as adsorption sites. Copyright 2000 Academic Press.

摘要

六甲基二硅氮烷与二氧化硅反应的量子化学计算表明该反应存在两步机理。第一步为速率决定步骤,导致表面硅醇发生三甲基硅烷基化并形成三甲基氨基硅烷。第二步涉及三甲基氨基硅烷反应中间体反应形成三甲基硅烷基表面物种和氨。使用定制的交互式软件,将此两步机理应用于分析六甲基二硅氮烷与气相二氧化硅反应动力学的数据。通过傅里叶变换红外光谱法监测表面反应程度以及六甲基二硅氮烷从甲苯溶液中的损失随时间的变化。数据分析表明,在所研究的条件下,反应受吸附速率限制。整个反应可以用与非氢键合表面硅醇的反应来解释,尽管氢键合硅醇充当吸附位点。版权所有2000年学术出版社。

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