Dai Yihu, Gao Xing, Wang Qiaojuan, Wan Xiaoyue, Zhou Chunmei, Yang Yanhui
Institute of Advanced Synthesis, School of Chemistry and Molecular Engineering, Nanjing Tech University, Nanjing 211816, China.
Chem Soc Rev. 2021 May 11;50(9):5590-5630. doi: 10.1039/d0cs01260b.
Catalytic non-oxidative direct dehydrogenation of light alkanes serves as an effective reinforcement to selectively produce the corresponding olefins, and the heterogeneous metals and metal oxides, not limited to the commercially used Pt- and Cr-based catalysts, are widely investigated to enhance the efficiency. In this review, we outline the progress of these dehydrogenation catalysts that have been mainly developed in the past five years. For different classes of the most-promising catalysts in the selective dehydrogenation of ethane-to-ethylene and propane-to-propylene, their syntheses, structural information, catalytic properties and mechanisms are comparatively summarized.
轻质烷烃的催化非氧化直接脱氢是选择性生产相应烯烃的有效强化方法,不限于商业使用的铂基和铬基催化剂的多相金属和金属氧化物被广泛研究以提高效率。在本综述中,我们概述了过去五年中主要开发的这些脱氢催化剂的进展。对于乙烷制乙烯和丙烷制丙烯选择性脱氢中最有前景的不同类型催化剂,比较总结了它们的合成、结构信息、催化性能和机理。