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沸石分子筛金属交换催化剂在非氧化丙烷脱氢反应中的位阻效应和机理研究。

Site Diversity and Mechanism of Metal-Exchanged Zeolite Catalyzed Non-Oxidative Propane Dehydrogenation.

机构信息

Center for Catalytic Science and Technology, Department of Chemical and Biomolecular Engineering, University of Delaware, Newark, DE, 19716, USA.

College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, China.

出版信息

Adv Sci (Weinh). 2023 May;10(13):e2207756. doi: 10.1002/advs.202207756. Epub 2023 Mar 10.

Abstract

Metal-exchanged zeolites are well-known propane dehydrogenation (PDH) catalysts; however, the structure of the active species remains unresolved. In this review, existing PDH catalysts are first surveyed, and then the current understanding of metal-exchanged zeolite catalysts is described in detail. The case of Ga/H-ZSM-5 is employed to showcase that advances in the understanding of structure-activity relations are often accompanied by technological or conceptional breakthroughs. The understanding of Ga speciation at PDH conditions has evolved owing to the advent of in situ/operando characterizations and to the realization that the local coordination environment of Ga species afforded by the zeolite support has a decisive impact on the active site structure. In situ/operando quantitative characterization of catalysts, rigorous determination of intrinsic reaction rates, and predictive computational modeling are all significant in identifying the most active structure in these complex systems. The reaction mechanism could be both intricately related to and nearly independent of the details of the assumed active structure, as in the two main proposed PDH mechanisms on Ga/H-ZSM-5, that is, the carbenium mechanism and the alkyl mechanism. Perspectives on potential approaches to further elucidate the active structure of metal-exchanged zeolite catalysts and reaction mechanisms are discussed in the final section.

摘要

金属交换沸石是众所周知的丙烷脱氢(PDH)催化剂;然而,活性物种的结构仍未得到解决。在这篇综述中,首先调查了现有的 PDH 催化剂,然后详细描述了金属交换沸石催化剂的现有理解。以 Ga/H-ZSM-5 为例,展示了对结构-活性关系的理解的进展通常伴随着技术或概念上的突破。由于原位/操作条件下的表征的出现以及意识到沸石载体提供的 Ga 物种的局部配位环境对活性位点结构具有决定性影响,因此对 Ga 形态的理解在 PDH 条件下得到了发展。对催化剂的原位/操作定量表征、内在反应速率的严格确定以及预测性计算建模对于在这些复杂体系中确定最活跃的结构都非常重要。反应机理既可以与假设的活性结构的细节密切相关,也可以几乎独立,就像在 Ga/H-ZSM-5 上提出的两种主要 PDH 机理,即碳阳离子机理和烷基机理。在最后一节中讨论了进一步阐明金属交换沸石催化剂和反应机理的活性结构的潜在方法的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3171/10161086/71381eca8fd5/ADVS-10-2207756-g013.jpg

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