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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Study on the ammonia-catalyzed hydrolysis kinetics of single phenyltriethoxysilane and mixed phenyltriethoxysilane/tetraethoxysilane systems by liquid-state Si-29 NMR
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Study on the ammonia-catalyzed hydrolysis kinetics of single phenyltriethoxysilane and mixed phenyltriethoxysilane/tetraethoxysilane systems by liquid-state Si-29 NMR

机译:Si-29 NMR研究单苯基三乙氧基硅烷和苯基三乙氧基硅烷/四乙氧基硅烷混合体系的氨催化水解动力学

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In situ Si-29 liquid-state nuclear magnetic resonance was used to investigate the ammonia-catalyzed hydrolysis and condensation of the single phenyltriethoxysilane (PTES) systems and the mixed tetraethoxysilane (TEOS)/PTES systems dissolved in methanol. By varying the molar ratio of the PTES, water and ammonia in the initial solutions, the hydrolysis rate constants for PTES in single precursor systems were disclosed as well as the corresponding reaction orders by fitting the concentration curves of the intermediate species as functions of time. Due to the cooperation of inductive and steric effect, PTES shows a low reaction activity. Under ammonia catalysis, the hydrolysis reaction orders of TEOS and PTES in the mixed precursor systems all retained the first-order, which is similar to single precursor systems. The hydrolysis rate constants of TEOS and PTES in the mixed systems were larger than the values of TEOS and PTES in their single precursor systems, respectively. Another important result was: the reaction orders of both ammonia and water increased to different extent for TEOS and PTES in mixed systems. Hydrolysis and condensation kinetics showed more compatible hydrolysis-condensation relative rates between TEOS and PTES, which affected remarkably the final microstructure of silica particles. (c) 2006 Elsevier B.V. All rights reserved.
机译:利用原位Si-29液态核磁共振研究了氨催化的单苯基三乙氧基硅烷(PTES)系统和混合的四乙氧基硅烷(TEOS)/ PTES系统溶解在甲醇中的水解和缩合反应。通过改变初始溶液中PTES,水和氨的摩尔比,揭示了单个前体体系中PTES的水解速率常数,以及通过拟合中间物质的浓度曲线随时间变化的相应反应顺序。由于诱导作用和空间作用的共同作用,PTES显示出低的反应活性。在氨气催化下,混合前驱体系统中TEOS和PTES的水解反应顺序均保持一阶,​​这与单个前驱体系统相似。混合体系中TEOS和PTES的水解速率常数分别大于其单一前体体系中TEOS和PTES的水解速率常数。另一个重要的结果是:混合系统中TEOS和PTES的氨和水的反应顺序增加了不同程度。水解和缩合动力学显示TEOS和PTES之间更相容的水解-缩合相对速率,这显着影响了二氧化硅颗粒的最终微观结构。 (c)2006 Elsevier B.V.保留所有权利。

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