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Effects of individual promoters on the Direct Synthesis of methylchlorosilanes

机译:单个促进剂对甲基氯硅烷直接合成的影响

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The industrially relevant Direct Synthesis involves the reaction of methyl chloride with silicon in the presence of a copper catalyst (promoted with Zn, Sn, and P), termed the contact mass, to form methylchlorosilanes. In situ attenuated total reflection Fourier transform infrared spectroscopy (ATR-FTIR) coupled with flow reactor studies was used to help understand the relationship between the composition of the working catalytic surface and product selectivity during reaction (1 bar CH_3Cl at 300 °C). Promotion of copper-silicon contact masses with Sn and Zn increased the selectivity of the reaction for dimethyldichlorosilane compared to P-promoted and copper-silicon (unpromoted) contact masses. Results showed that the rate of Si conversion associated with the Sn-promoted contact mass was higher than the Si conversion rate associated with the Zn and unpromoted contact masses. ATR-FTIR results suggested that Sn promotion led to a stabilization and relatively high concentration of surface methyl species. In contrast to Sn or Zn promotion, P promotion led to significant methyl fragmentation on the contact mass surface, consistent with its relatively low selectivity toward dimethyldichlorosilane.
机译:与工业相关的直接合成法包括在接触催化剂的铜催化剂(以Zn,Sn和P促进的铜催化剂)存在下,使甲基氯与硅反应生成甲基氯硅烷。使用原位衰减全反射傅立叶变换红外光谱(ATR-FTIR)结合流式反应器研究来帮助理解反应过程中工作催化表面的组成与产物选择性之间的关系(在300°C下1 bar CH_3Cl)。与P促进和铜-硅(未促进)接触物质相比,与Sn和Zn促进铜-硅接触物质增加了对二甲基二氯硅烷的反应选择性。结果表明,与Sn促进的接触质量相关的Si转化率高于与Zn和未促进的接触质量相关的Si转化率。 ATR-FTIR结果表明,Sn的促进导致表面甲基物质的稳定和相对较高的浓度。与Sn或Zn促进相反,P促进导致接触物质表面上明显的甲基断裂,这与其对二甲基二氯硅烷的选择性相对较低相符。

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