Modulated synthesis of cesium phosphomolybdate encapsulated in hierarchical porous UiO-66 for catalysing alkene epoxidation

The hybrid composite of cesium phosphomolybdate (CsPM) encapsulated in hierarchical porous UiO-66 (HP-UiO-66) was synthesized using a modulated solvothermal method. A variety of characterization results demonstrated that the pore size distribution of CsPM@HP-UiO-66 is broader than traditional microp...

Full description

Saved in:
Bibliographic Details
Published inRSC advances Vol. 13; no. 47; pp. 33533 - 3354
Main Authors Hu, Dianwen, Miao, Songsong, Zhang, Pengfei, Wu, Siyuan, He, Yu-Peng, Meng, Qingwei
Format Journal Article
LanguageEnglish
Published Cambridge Royal Society of Chemistry 07.11.2023
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:The hybrid composite of cesium phosphomolybdate (CsPM) encapsulated in hierarchical porous UiO-66 (HP-UiO-66) was synthesized using a modulated solvothermal method. A variety of characterization results demonstrated that the pore size distribution of CsPM@HP-UiO-66 is broader than traditional microporous CsPM@UiO-66 and cesium phosphomolybdate clusters are uniformly distributed in the octahedral cages of HP-UiO-66. The catalytic properties of the hybrid composite were investigated in alkene epoxidation reaction with tert -butyl hydroperoxide ( t -BuOOH) as an oxidant. CsPM@HP-UiO-66 showed much higher catalytic activity for the alkene epoxidation reaction in comparison with the reference catalysts and could be easily reused by centrifugation and recycled for at least ten runs without significant loss in catalytic activity. The superior catalytic activity and stability of the hybrid composite CsPM@HP-UiO-66 should be mainly attributed to the hierarchical pores in the support HP-UiO-66 promoting the diffusion of alkene molecules, the uniform distribution of highly active CsPM clusters in the octahedral cages of HP-UiO-66, the introduction of cesium cations to form the insoluble cesium phosphomolybdate and the strong metal-support interactions (SMSI) between the CsPM clusters and the HP-UiO-66 framework. Cesium phosphomolybdate encapsulated in HP-UiO-66 was successfully synthesized. The obtained materials showed superior catalytic performance in alkene epoxidation reaction, which was attributed to the well-designed CsPM@HP-UiO-66 composites.
Bibliography:https://doi.org/10.1039/d3ra06749a
Electronic supplementary information (ESI) available. See DOI
ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 14
content type line 23
ISSN:2046-2069
2046-2069
DOI:10.1039/d3ra06749a