首页> 外文期刊>Journal of Sol-Gel Science and Technology >Correlation between molecular structures and reaction conditions (temperature-pressure-time) in the preparation of secondary, tertiary, and quaternary ammonium-functionalized polyhedral oligomeric silsesquioxanes
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Correlation between molecular structures and reaction conditions (temperature-pressure-time) in the preparation of secondary, tertiary, and quaternary ammonium-functionalized polyhedral oligomeric silsesquioxanes

机译:分子结构与反应条件(温度 - 季铵 - 官能化多面体镁硅氧烷酸盐制剂中的分子结构与反应条件(温度 - 压 - 时间)的相关性

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摘要

Polyhedral oligomeric silsesquioxanes (POSSs) were prepared by the hydrolytic condensation reaction of organotrialkoxysilanes containing secondary and tertiary amino moieties, as well as quaternary ammonium groups. The employed methodology involved using aqueous trifluoromethanesulfonic acid (HOTf) as the catalyst and solvent at various temperatures and pressures in a Kugelrohr apparatus, which controlled the solvent evaporation time. At lower setting temperature (60 degrees C) or at shorter solvent evaporation times (<= 2 h), the main product was a cage octamer (T-8-POSS). Moreover, even at higher temperatures (>= 100 degrees C), the T(8)compound was the primary product observed for short evaporation time (<= 1.5 h). However, when the solvent evaporation times increased (>= 4 h, controlled by pressure) at higher temperatures (>= 100 degrees C), the proportion of a cage decamer (T-10-POSS) in the POSS mixtures was larger. Hence, T-10-POSS was formed more readily than the corresponding T(8)compound when the solvent was evaporated at higher temperatures and over the longer periods of time.
机译:通过含有仲和叔氨基部分的有机三氧基硅烷的水解缩合反应以及季铵基团,制备多面体低聚二氧化硅烷烷(POSSS)。使用三氟甲磺酸水溶液(HotF)作为催化剂和溶剂在kugelrohr装置中的各种温度和压力下使用的方法,其控制溶剂蒸发时间。在较低的设定温度(60℃)或更短的溶剂蒸发时间(<= 2小时)时,主要产物是笼子八皿(T-8-poss)。此外,即使在较高温度(> = 100摄氏度)下,T(8)化合物也是观察到短蒸发时间(<= 1.5h)的初级产物。然而,当溶剂蒸发时间增加(> = 4小时,由压力控制)在较高温度下(> = 100℃)时,容量混合物中的笼子腐烂(T-10-POSS)的比例较大。因此,当在较高温度下蒸发溶剂并且在更长的时间段内时,T-10-POSS比相应的T(8)化合物更容易地形成。

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