4.5 Review

Creation of Hierarchical Titanosilicate TS-1 Zeolites

期刊

ADVANCED MATERIALS INTERFACES
卷 8, 期 4, 页码 -

出版社

WILEY
DOI: 10.1002/admi.202001095

关键词

hierarchically-ordered materials; oxidation reaction; titanosilicate; zeolites

资金

  1. National Key Research and Development Program of China [2016YFB0701100]
  2. National Natural Science Foundation of China [21621001, 21920102005, 21835002]
  3. 111 Project [B17020]

向作者/读者索取更多资源

Hierarchical TS-1 zeolites with multiple porosity levels have attracted increasing interest in recent years due to their improved mass transfer efficiency and enhanced accessibility of Ti active sites. Strategies for constructing hierarchical TS-1 zeolites, such as mesoporogen, mesoporogen-free, and demetallization methods, have been developed to address steric and diffusional issues, leading to improved catalytic performances in oxidative desulfurization and epoxidation reactions. Effective characterization methods for Ti species and hierarchical zeolite structures have been described, along with current challenges and future development perspectives for preparing hierarchical TS-1 zeolite catalysts.
Hierarchical TS-1 zeolites that possess at least two levels of porosities have aroused growing interest in the past years. The enhanced mass transfer efficiency and increased accessibility of Ti active sites in the hierarchical TS-1 zeolites greatly improve the catalytic performance by overcoming the steric and diffusional problems. In this review, recent important progress in the construction of hierarchical TS-1 zeolites is presented, including mesoporogen, mesoporogen-free, and demetallization strategies. Effective characterization methods for the Ti species and the hierarchical zeolite structures are described. The impacts of hierarchical structures on the creation of active Ti species and improvement of catalytic performances in the oxidative desulfurization and epoxidation reactions are highlighted. Finally, current challenges and future development perspectives for preparing hierarchical TS-1 zeolite catalysts are addressed.

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