High-Density Coordinatively Unsaturated Zn Catalyst for Efficient Alkane Dehydrogenation

The exploration of non-noble metal catalysts for alkane dehydrogenation and their catalytic mechanisms is the priority in catalysis research. Here, we report a high-density coordinatively unsaturated Zn cation (Zncus) catalyst for the direct dehydrogenation (DDH) of ethylbenzene (EB) to styrene (ST)...

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Veröffentlicht in:Journal of the American Chemical Society 2023-09, Vol.145 (38), p.20936-20942
Hauptverfasser: Wang, Linlin, Wang, Hui, Cheng, Renfei, Wang, Maolin, Cai, Xiangbin, Ren, Pengju, Xiao, Dequan, Wang, Ning, Wen, Xiao-Dong, Diao, Jiangyong, Wang, Xiaohui, Ma, Ding, Liu, Hongyang
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Sprache:eng
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Zusammenfassung:The exploration of non-noble metal catalysts for alkane dehydrogenation and their catalytic mechanisms is the priority in catalysis research. Here, we report a high-density coordinatively unsaturated Zn cation (Zncus) catalyst for the direct dehydrogenation (DDH) of ethylbenzene (EB) to styrene (ST). The catalyst demonstrated good catalytic performance (∼40% initial EB conversion rate and >98% ST selectivity) and excellent regeneration ability in the reaction, which is attributed to the high-density (HD) distribution and high-stability structure of Zncus active sites on the surface of zinc silicate (HD-Zncus@ZS). Density functional theory (DFT) calculations further illustrated the reaction pathway and intermediates, supporting that the Zncus sites can efficiently activate the C–H bond of ethyl on ethylbenzene. Developing the high-density Zncus catalyst and exploring the catalytic mechanism laid a good foundation for designing practical non-noble metal catalysts.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.3c06311