TY - JOUR
T1 - Thermally activated ZIF-8-based nanofibrous membranes for visible-light photocatalytic formaldehyde degradation and bacterial inactivation toward integrated indoor-air purification
AU - Chen, Hai
AU - Sun, Lisa Mingzhe
AU - Wang, Tianqi
AU - Zhou, Jinrui
AU - Sun, Jiawei
AU - Wang, Zhenyao
AU - He, Xinping
AU - Yi, Chunhai
AU - Guo, Jiaxin
AU - Shang, Jin
AU - An, Alicia Kyoungjin
N1 - Publisher Copyright:
© 2026
PY - 2026/7/1
Y1 - 2026/7/1
N2 - Nanofiber membranes offer significant potential for air purification; however, conventional membranes are typically limited to particle filtration and lack functionality against bacteria or volatile organic compounds. To address this, this study fabricated a multifunctional photocatalytic nanofibrous membrane by electrospinning polystyrene (PS) with ZIF-8-T (the air-thermally treated ZIF-8) as a photocatalyst. ZIF-8-T has a specific functional group, isocyanate (-N=C=O), with a band gap of 2.19 eV and exhibits broad-spectrum photo-response properties (200–800 nm). The optimized membrane with a 150 wt% ZIF-8-T loading demonstrated excellent integrated performance: a high PM2.5 filtration efficiency of 98.1%, rapid degradation of 90.4% formaldehyde within 1 h under illumination, and superhydrophobicity with a water contact angle of 150.6°. Moreover, it achieved an antibacterial rate of 81.25% against E. coli within 30 mins of light exposure. This work presents a viable strategy for designing MOF-based composite membranes that integrate efficient filtration, photocatalytic degradation, and antibacterial functions for advanced air purification.
AB - Nanofiber membranes offer significant potential for air purification; however, conventional membranes are typically limited to particle filtration and lack functionality against bacteria or volatile organic compounds. To address this, this study fabricated a multifunctional photocatalytic nanofibrous membrane by electrospinning polystyrene (PS) with ZIF-8-T (the air-thermally treated ZIF-8) as a photocatalyst. ZIF-8-T has a specific functional group, isocyanate (-N=C=O), with a band gap of 2.19 eV and exhibits broad-spectrum photo-response properties (200–800 nm). The optimized membrane with a 150 wt% ZIF-8-T loading demonstrated excellent integrated performance: a high PM2.5 filtration efficiency of 98.1%, rapid degradation of 90.4% formaldehyde within 1 h under illumination, and superhydrophobicity with a water contact angle of 150.6°. Moreover, it achieved an antibacterial rate of 81.25% against E. coli within 30 mins of light exposure. This work presents a viable strategy for designing MOF-based composite membranes that integrate efficient filtration, photocatalytic degradation, and antibacterial functions for advanced air purification.
KW - Disinfection property
KW - Formaldehyde degradation
KW - Integrated air purification
KW - Photocatalytic membranes
KW - Superhydrophobic membranes
UR - https://www.scopus.com/pages/publications/105039070077
U2 - 10.1016/j.cej.2026.177265
DO - 10.1016/j.cej.2026.177265
M3 - 文章
AN - SCOPUS:105039070077
SN - 1385-8947
VL - 539
JO - Chemical Engineering Journal
JF - Chemical Engineering Journal
M1 - 177265
ER -