首页|CuO/ZrO2 co-promoted by ZnO, Sn, and CuP shows high efficiency for dimethyldichlorosilane production in the Rochow-Muller reaction

CuO/ZrO2 co-promoted by ZnO, Sn, and CuP shows high efficiency for dimethyldichlorosilane production in the Rochow-Muller reaction

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Multi-component promoters may efficiently improve the catalytic performance of the primary Cu-based catalysts in the Rochow-Muller reaction, but this approach is not well explored, and the roles of the promoters are not very clear. Herein, we report the ZrO2-supported CuO catalyst (CuO/ZrO2) modified with a co-promoter of ZnO, Sn, and CuP prepared by a simple dry ball-milling method. The co-promoter could significantly increase the amount of surface adsorbed oxygen and improve the reducing ability of catalysts, facilitating the formation of the active Cu3Si phase and further advancing dimethyldichlorosilane ((CH3)(2)SiCl2, M2) selectivity and Si conversion in the Rochow-Muller reaction. Compared to the state-of-the-art commercial catalyst, these CuO/ZrO2 catalysts with the co-promoters all showed enhanced catalytic activity. Especially, the CuO/ZrO2 catalyst with the co-existence of ZnO, Sn, and CuP promoters achieved the highest M2 selectivity and Si conversion, attributed to its most abundant surface adsorption oxygen and the strongest reducibility. This work opens up a new avenue to improve the catalytic activity of Cu-based catalysts for the Rochow-Muller reaction.

PromotersSurface adsorbed oxygenDimethyldichlorosilaneRochow-Muller reactionCuO/ZrO2 catalystCATALYTIC-ACTIVITYCHARGE-TRANSFERCOPPERMORPHOLOGYSURFACENANOPARTICLESMICROSPHERESPERFORMANCEMETHANOLPHASE

Su, Fabing、Zeng, Fanchao、Zhu, Yongxia、Jin, Baofang、Ji, Yongjun、Shi, Lei、Xu, Guangwen、Fu, Dongxing、Zhong, Ziyi

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Chinese Acad Sci

Shenyang Univ Chem Technol

Beijing Technol & Business Univ

Gripm Res Inst Co Ltd

Guangdong Technion Israel Inst Technol GTIIT

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2022

Applied Catalysis

Applied Catalysis

ISSN:0926-860X
年,卷(期):2022.636
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