Wang Xiangyu, Ma Ye, Wu Qinming, Wen Yiqiang, Xiao Feng-Shou
Department of Chemistry, Zhengzhou University, Zhengzhou 450001, China.
Key Lab of Applied Chemistry of Zhejiang Province, Zhejiang University, Hangzhou 310007, China.
Chem Soc Rev. 2022 Apr 4;51(7):2431-2443. doi: 10.1039/d1cs00651g.
Zeolites with well-defined micropores have been widely used as heterogeneous catalysts in the fields of petroleum refining, fine chemicals, and environment protection. However, the sole micropores in the zeolite structures usually impose diffusion constraints, which would greatly influence their catalytic performances. Therefore, it is highly desirable to shorten the diffusion pathway of zeolites and thus eliminate the diffusion constraints. One of the efficient methods is to synthesize zeolite nanosheets, which has become a hot topic in the past decades. In this tutorial review, the recent progresses in the synthesis of zeolite nanosheets and their relevant catalysis are briefly discussed. Various strategies for the synthesis of zeolite nanosheets are summarized including delamination, templated crystallization, additive-assisted synthesis, seed-directed synthesis, and gaseous expansion synthesis. In addition, the catalytic reactions of zeolite nanosheets with acidic and metal sites are also outlined. This tutorial review should be significant for the design and preparation of highly efficient zeolite catalysts.
具有明确微孔的沸石已在石油炼制、精细化工和环境保护等领域广泛用作多相催化剂。然而,沸石结构中的单一微孔通常会产生扩散限制,这将极大地影响其催化性能。因此,非常需要缩短沸石的扩散路径,从而消除扩散限制。一种有效的方法是合成沸石纳米片,这在过去几十年中已成为一个热门话题。在本综述中,简要讨论了沸石纳米片合成及其相关催化的最新进展。总结了合成沸石纳米片的各种策略,包括分层、模板化结晶、添加剂辅助合成、种子导向合成和气态膨胀合成。此外,还概述了具有酸性和金属位点的沸石纳米片的催化反应。本综述对于高效沸石催化剂的设计和制备具有重要意义。