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◆ ACS Applied Polymer Materials2026-02-09· Membrane

Construction of Core–Satellite Structure MIL-53(Al, Fe)–OH Decorated Membranes with Adsorption Photocatalysis and Oil/Water Separation

Fei Sun, Jing Zhang, Yaxin Zheng, Yujing Xue, Xiyan Han, Hongyan Wu, Yunfei Rao

原始摘要(英文原文)· Original abstract
Membrane separation technology has been widely employed in water purification and efficient pollutant removal. In this research, a core–satellite structured bimetallic metal–organic framework (MOF) (MIL-53(Al, Fe)–OH) was grown onto the surface of an electrospun polyamide 66 (PA66) nanofiber membrane via a hydrothermal method. Benefiting from the intrinsic properties of MIL-53(Al, Fe)–OH and the high specific surface area of PA66 membranes, the PA66@MIL-53(Al, Fe)–OH membranes exhibit high wettability and excellent adsorption-photocatalytic and oil/water separation properties. And the prepared membrane demonstrates excellent hydrophilicity and underwater superoleophobicity, with a flux recovery rate of 86.60% for the soybean oil emulsion. Moreover, the incorporation of bimetallic MOFs enhanced photocatalytic activity through the interfacial carrier transfer mechanism, leading to a methylene blue removal rate of nearly 100% within 1.5 h under an alkaline environment. Additionally, the composite membrane maintains a stable wettability in complex chemical environments. These results provide an efficient and sustainable strategy for treating oily wastewater and degrading organic pollutants.
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Construction of Core–Satellite Structure MIL-53(Al, Fe)–OH Decorated Membranes with Adsorption Photocatalysis and Oil/Water Separation — 科研速览 Science Skim