A.N. Nesmeyanov Institute of Organoelement Compounds of the Russian Academy of Sciences, 28 Vavilov St., 119991 Moscow, Russia.
Molecules. 2021 Jul 20;26(14):4383. doi: 10.3390/molecules26144383.
The rate of hydrolysis-condensation reaction of phenyltrichlorosilane in water-acetone solutions and the product yields were shown to significantly depend on the concentration of HCl (C) in the solutions. The main product of the reaction was all-(tetrahydroxy)(tetraphenyl)cyclotetrasiloxane. This was different from the earlier published results of analogous reactions of -tolylSiCl, -ClPhSiCl, and -naphtylSiCl, in which some products of other types were formed. For example, -1,1,3,3-tetrahydroxy-1,3-di--naphtyldisiloxane was obtained in the case of -naphtylSiCl. All-(tetrahydroxy)(tetraphenyl)cyclotetrasiloxane was treated in acetone with HCl to give the other three geometric isomers (-, , and all-). The thermal self-condensation of these four isomers under "pseudo"-equilibrium conditions (under atmospheric pressure) was investigated in different solvents, in quartz or molybdenum glass flasks. The compositions of the products were monitored by APCI-MS and Si NMR spectroscopy. It was shown that all-- and -isomers in toluene or anisole mostly gave the cage-like Ph-T and uncompleted cage-like Ph-TOSi(HO)Ph compounds. In contrast to these two isomers, the -isomer in toluene mainly formed dimers with the loss of one or two molecules of water. However, in acetonitrile, significant amounts of Ph-T and Ph-TOSi(HO)Ph species were formed along with the dimers. All--isomer did not enter into the reaction at all.
苯基三氯硅烷在水-丙酮溶液中的水解缩合反应速率和产物收率明显取决于溶液中 HCl(C)的浓度。反应的主要产物是全-(四羟基)(四苯基)环四硅氧烷。这与早先发表的类似的 -甲苯基 SiCl、-ClPhSiCl 和 -萘基 SiCl 反应的结果不同,在这些反应中形成了其他类型的一些产物。例如,在 -萘基 SiCl 的情况下,得到了一些产物。全-(四羟基)(四苯基)环四硅氧烷在丙酮中用 HCl 处理得到另外三种几何异构体(-、-和全-)。这四种异构体在“准”平衡条件(常压下)下在不同溶剂中,在石英或钼玻璃瓶中进行热自缩合反应。通过 APCI-MS 和 Si NMR 光谱监测产物的组成。结果表明,在甲苯或苯甲醚中,全--和 -异构体主要生成笼状 Ph-T 和未完全笼状 Ph-TOSi(HO)Ph 化合物。与这两种异构体不同,-异构体在甲苯中主要通过失去一个或两个水分子形成二聚体。然而,在乙腈中,随着二聚体的形成,大量的 Ph-T 和 Ph-TOSi(HO)Ph 物质形成。全--异构体根本没有参与反应。