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首页> 外文期刊>RSC Advances >Synthesis, characterization and theoretical calculations of model compounds of silanols catalyzed by TEMPO to elucidate the presence of Si-O-Si and Si-O-N bonds
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Synthesis, characterization and theoretical calculations of model compounds of silanols catalyzed by TEMPO to elucidate the presence of Si-O-Si and Si-O-N bonds

机译:TEMPO催化硅烷醇模型化合物的合成,表征和理论计算,以阐明Si-O-Si和Si-O-N键的存在

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We report the results from the reactions of 1-phenylethanol, 2-methylpropanol, trimethylsilanol and triphenylsilanol with TEMPO, OH-TEMPO and Br-TEMPO salt at different reaction conditions to obtain model functionalized compounds. With 1-phenylethanol, the ketone compound was obtained as expected, but when using triphenylsilanol the corresponding hexaphenyldisiloxane [di(triphenylsilane) ether] was obtained in crystal form, as well as the silaneoxiamine (Si-O-N). The hexaphenyldisiloxane crystal belonged to the triclinic crystal system with a space group P (1) over bar, a = 8.5829(4) angstrom, b = 9.4856(4) angstrom, c = 10.9694(5) angstrom, alpha = 95.951(4)degrees, beta = 90.059(3)degrees, gamma = 113.352(4)degrees, the asymmetric unit comprised of Z = 1. The results showed that the synthetic method to obtain silane ether is simple and can be completed in one step, as well as independently of the type of TEMPO and base used. Also, under the same reactions conditions, we prepared the corresponding TEMPO-containing silanes as triphenylsilaneoxiamine and observed formation of Si-oxide chains through an in situ polycondensation reaction. The resulting compounds were characterized by FT-IR spectroscopy, mass spectrometry (EI), and H-1-NMR. The best assignment for infrared spectroscopy characterization and the structural parameters by vibrational frequencies were determined by DFT calculations.
机译:我们报告了1-苯基乙醇,2-甲基丙醇,三甲基硅烷醇和三苯基硅烷醇与TEMPO,OH-TEMPO和Br-TEMPO盐在不同反应条件下反应的结果,以获得功能化的模型化合物。使用1-苯基乙醇,可以按预期方式获得酮化合物,但是当使用三苯基硅烷醇时,可以获得晶体形式的相应六苯基二硅氧烷[二(三苯基硅烷)醚],以及硅烷氧胺(Si-O-N)。六苯基二硅氧烷晶体属于三斜晶系,在bar上有一个空间群P(1),a = 8.5829(4)埃,b = 9.4856(4)埃,c = 10.9694(5)埃,alpha = 95.951(4)度,β= 90.059(3)度,γ= 113.352(4)度,不对称单元由Z = 1组成。结果表明,获得硅烷醚的合成方法很简单,也可以一步完成。不受TEMPO类型和所用碱的影响。同样,在相同的反应条件下,我们制备了相应的含TEMPO的硅烷作为三苯基硅烷氧胺,并观察到通过原位缩聚反应形成的Si-氧化物链。通过FT-IR光谱,质谱(EI)和H-1-NMR对所得化合物进行表征。通过DFT计算确定了红外光谱表征和振动频率的结构参数的最佳分配。

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