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Updated: Jul 30, 2026

Surface Functionalization of Metal-Organic Frameworks for Improved Moisture Resistance
Published on: September 5, 2018
Construction of Hierarchical Fe-MFI Nanosheets with Enhanced Fenton-like Degradation Performance
Haibo Jiang1, Lin Xu1, Qingrun Meng1
1Key Laboratory of Energy Chemical and Nano-Catalysis of Liaoning Province, School of Chemical and Environmental Engineering, Liaoning University of Technology, Jinzhou 121001, China.
Abstract:
Introducing hierarchical structure into zeolites or synthesizing two-dimensional (2D) zeolite nanosheets have drawn much attention in catalysis and separation process due to the improvement in zeolites' diffusion properties. In this study, Fe incorporated on the MFI zeolite framework (Fe-MFI) with the nanosheet morphology and unique hierarchical pore structure was successfully synthesized and applied for the adsorption and degradation of Rhodamine B (RhB) in a Fenton-like reaction in the presence of H2O2. The synthesis involved a seed-directed hydrothermal method in the presence of NH4F and a subsequent NaOH treatment made the synthesized hierarchical Fe-MFI nanosheets (Fe-20-10) characterized by abundant highly dispersed framework Fe3+ species. As a result of these features, the Fe-20-10 showed excellent ability of adsorption and degradation efficiency of RhB, and enhanced durability due to negligible leaching of framework Fe3+ species. Moreover, the hydroxyl radicals were determined as the main the reactive oxygen species of RhB degradation, and a possible adsorption-degradation pathway was proposed. This work offers guidance for developing high-performance Fenton-like degradation catalysts.

