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Peer-reviewed veterinary case report

MIL-101-NH<sub>2</sub>(Fe)-Coated Nylon Microfibers for Immobilized Photocatalysts in RhB and Cr(VI) Removal.

Year:
2023
Authors:
Kang M et al.
Affiliation:
Korea Institute of Science and Technology · South Korea

Abstract

MIL-101-NH<sub>2</sub>(Fe) is one of the effective photocatalytic metal-organic frameworks (MOFs) working under visible light. However, its powder-type form inhibits reusability in practical applications. In this study, we immobilized MIL-101-NH<sub>2</sub>(Fe) on a polymeric microfiber mesh to improve reusability while minimizing the loss of catalytic performance. To overcome the lack of surface functionality of the nylon fibers, an atomic layer deposition Al<sub>2</sub>O<sub>3</sub> layer and NH<sub>2</sub>-BDC linker were introduced to facilitate uniform coating of the MOF on the fiber surface. The reactions of the metal precursor to the nylon substrate and NH<sub>2</sub>-BDC ligand of the MOF allow chemical bonding from the core to the shell of the entire hybrid catalytic materials. The resulting fiber-immobilized MOFs (Nylon@Al<sub>2</sub>O<sub>3</sub>@MOF) demonstrated high photocatalytic performance in the removal of RhB and Cr(VI) as representatives of organic dyes and heavy metals, respectively, while retaining over 85% of its efficiency after five cycles.

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Original publication: https://europepmc.org/article/MED/37151491