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The pyrolytic decomposition of metal alkoxides (di-acetoxy-di-t-butoxy-silane, DADBS) during chemical vapour deposition of thin oxide films

机译:薄氧化膜化学气相沉积过程中金属醇盐(二乙酰氧基-二叔丁氧基硅烷,DADBS)的热分解

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摘要

In this study the effects of the nature of metal alkoxides on their vapour pressures and thermal decomposition chemistry are reported. The vapour pressure and the volatility of a metal alkoxide strongly depends on the steric effect of its alkoxy group. The thermal decomposition chemistry of one metal alkoxide (di-acetoxy-di-t-butoxy-silane, DADBS) has been studied by mass spectrometry at temperatures between 423 and 923 K. The pyrolytic products were acetic acid anhydride and 2-methyl propene. The acetic acid anhydride is formed at temperatures above 473 K and 2-methyl propene is formed above 673 K by a ß -hydride elimination mechanism. In these steps, a 6-ring intermediate is supposed to be formed. The silicon acid finally remaining is proposed to react by poly-condensation to SiO2 coatings or powder.
机译:在这项研究中,报道了金属醇盐的性质对其蒸气压和热分解化学的影响。金属醇盐的蒸气压和挥发性在很大程度上取决于其烷氧基的空间效应。通过质谱研究了一种金属醇盐(二乙酰氧基-二叔丁氧基硅烷,DADBS)在423至923 K之间的热分解化学。热解产物为乙酸酐和2-甲基丙烯。乙酸酐是在473 K以上的温度下形成的,而2-甲基丙烯是在673 K以上的温度下通过β-氢化物消除机理形成的。在这些步骤中,应该形成一个6环中间体。建议最后残留的硅酸通过缩聚反应生成SiO2涂层或粉末。

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