Fengyao Wang, Hejie Shen, Zisheng Feng, Junjie Liu, Lei Yao, Geming Wang, Zhe Chen
Traditional polysulfone (PSF) membranes are constrained by inherently low permeability and insufficient antifouling capability. Incorporating zeolitic imidazolate framework-8 (ZIF-8), a material characterized by its highly porous architecture and large specific surface area, offers an effective strategy for improving membrane porosity and introducing additional adsorption-active sites. In this work, two different-sized ZIF-8 particles ( Z 1: ∼50 nm, Z 2: ∼250 nm) were employed to elucidate how ZIF-8 functions as an auxiliary water transport pathway within PSF/ZIF-8 composite membranes. Electrochemical impedance spectroscopy (EIS) analyses showed that membrane effective ionic pathway connectivity increased progressively with higher ZIF-8 loadings, and the composite membrane containing Z 1 exhibited a notably higher porosity than that incorporating Z 2 . The incorporation of ZIF-8 significantly enhanced the water permeability of PSF membranes, and a pronounced negative correlation was observed between the electrochemical impedance values and water flux. Furthermore, in situ EIS measurements demonstrated that the composite membranes incorporating ZIF-8 particles exhibited excellent antifouling performance, indicating that EIS can serve as a cost-effective and real-time monitoring tool for assessing membrane separation performance.