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METHOD FOR MAKING ALKOXY-MODIFIED SILSESQUIOXANES AND AMINO ALKOXY-MODIFIED SILSESQUIOXANES

机译:制备烷氧基改性的倍半硅氧烷和氨基烷氧基改性的倍半硅氧烷的方法

摘要

A method is presented for making an amino alkoxy-modified silsesquioxane (amino AMS) comprising one or more compounds selected from the group consisting of an amino-AMS, an amino/mercaptan co-AMS, an amino/blocked mercaptan co-AMS, and mixtures of these. The use of solid strong cationic catalysts in this reaction system is advantageous because the catalyst remains as a solid throughout the reaction, allowing simplified separation of the solid catalyst from the soluble amino AMS or amino co-AMS products, resulting in total or near total recovery of the amino AMS or amino co-AMS products, as well as virtual total recovery of the catalyst for recycling. The use of the solid strong cationic catalysts is advantageous because it results in amino AMS products that are free of, or substantially free of, residual acid catalyst.
机译:提出了一种制备氨基烷氧基改性的倍半硅氧烷(氨基AMS)的方法,该方法包含一种或多种选自氨基-AMS,氨基/硫醇辅助AMS,氨基/嵌段硫醇辅助AMS和这些的混合物。在该反应系统中使用固体强阳离子催化剂是有利的,因为催化剂在整个反应过程中保持为固体,从而简化了将固体催化剂与可溶性氨基AMS或氨基共AMS产物分离的过程,从而实现了总回收率或接近总回收率。氨基AMS或氨基co-AMS产品的生产,以及回收催化剂的虚拟总回收量。固体强阳离子催化剂的使用是有利的,因为其导致不含或基本上不含残留酸催化剂的氨基AMS产物。

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