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Updated: Jul 29, 2026

Synthesis and Characterization of Functionalized Metal-organic Frameworks
Published on: September 5, 2014
Polyoxometalate Directional Etching for Fabricating Defect Hollow Metal-Organic Framework with Hierarchical Structure
Wen-Xiong Shi1, Heng-Rui Fan1, Wen-Rui Liu1
1State Key Laboratory of Crystal Materials, Institute for New Energy Materials and Low Carbon Technologies, School of Materials Science and Engineering, Tianjin University of Technology, Tianjin, 300384, China.
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Encapsulating guests in metal-organic frameworks (MOFs) can widely expand their functionality, but usually reduces porosity, hindering reactant and product diffusion. Herein, a simple and rapid room temperature directional etching technique is developed to engineer MOFs with tailored hierarchical structures. With H3PMo12O40 (PMo12) as an etchant, classical cubic morphology of WNi@Z8, a ZIF-8 MOF encapsulating SiW11NiO39 (WNi), can be transformed into various defect-engineered hollow structures, and a comprehensive phase diagram is established by systematically adjusting etching parameters. Mechanistic studies reveal that PMo12 infiltrates ZIF-8 preferentially through {111} facet, followed by controlled etching along {110} and {100} facets, enabling precise spatial control over cavity formation. The etched WNi@Z8 achieves an exceptional H2 evolution rate of 12,667 µmol g-1 h-1, nearly threefold enhancement over the non-etched counterpart due to the enhanced exposure of encapsulated WNi clusters in the hollow structure. This work provides a generalizable strategy for engineering guest@MOFs to achieve high-efficiency catalysis.
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