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◆ ACS applied materials & interfaces2026-09-08

Protein Nanosheet-Programmed Interfacial Polymerization for Heterogeneous Polyamide Desalination Membranes.

Weiwen Chen, Meng Zhang, Xi Zhang, Jian Guo, Chaoqun Zhu, Xun Liu, Mengxia Wang, Yufei Shu, Zixin Han, Ronghui Liu, Yi Li, Zhongying Wang

一句话结论

This work demonstrates that protein nanosheets can serve as programmable nanointerfacial regulators for directing PA formation, offering a biomimetic strategy to alleviate the permeability-selectivity trade-off in desalination membranes.

原始摘要(原文)
Spatial regulation of monomer diffusion during interfacial polymerization (IP) is critical for engineering high-performance polyamide (PA) reverse osmosis membranes yet remains difficult to control with conventional nanomaterial additives. Here, we report a biomimetic diffusion-programming strategy using Mycobacterium smegmatis porin A (MspA) protein nanosheets (MNSs) as interfacial regulators. The MNSs integrate MspA nanochannels within a PB-PEO polymer matrix, coupling matrix-imposed diffusion restriction with channel-mediated rapid MPD transport. This protein-channel/polymer-matrix architecture creates spatially heterogeneous MPD diffusion pathways during IP, directing the formation of PA layers with elevated and leaf-like structures. The resulting heterogeneous PA architecture increases the water-accessible surface area and reduces local transport resistance, while maintaining selective-layer integrity and a high cross-linking degree. The optimized TFCM-0.26 membrane achieved a water permeance of 3.55 L m-2 h-1 bar-1, representing a 77.5% increase over the control TFC membrane, while maintaining excellent NaCl rejection above 99%. The membrane also exhibited stable salt-separation performance under varied salinity, pressure, and long-term operation. Mechanistic diffusion measurements and single-channel transport analyses confirmed that MspA nanochannels provide localized fast MPD transport within the diffusion-restrictive PB-PEO matrix. This work demonstrates that protein nanosheets can serve as programmable nanointerfacial regulators for directing PA formation, offering a biomimetic strategy to alleviate the permeability-selectivity trade-off in desalination membranes.
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Protein Nanosheet-Programmed Interfacial Polymerization for Heterogeneous Polyamide Desalination Membranes. — 科研速览 Science Skim