材料科学
膜
超滤(肾)
共聚物
过滤(数学)
极限抗拉强度
复合材料
化学工程
聚合物
纳米尺度
纳米技术
色谱法
化学
统计
工程类
生物化学
数学
作者
Daniel W. Weller,Guorong Ma,Luke Galuska,Song Zhang,Michael Wong‐Stringer,Sophia Aracri,Weiyu Wang,Kunlun Hong,Xiaodan Gu
标识
DOI:10.1021/acsapm.1c00963
摘要
A new pore formation process was investigated for the manufacture of composite ultrafiltration membranes. Phase-separated block copolymer (BCP) thin films supported on a compliant macroporous poly(ether sulfone) (PES) support craze under tensile strain, leaving behind pores of predictable size based on the self-assembled nanoscopic domains. The high aspect ratio pores formed in this process were used to create membranes that were highly permeable (959 L/(m<sup>2</sup> h bar) with near complete rejection of 40 nm diameter gold nanoparticles (AuNP). By use of BCP’s inherent ability to cavitate under strain, tedious block removal steps are avoided. Membranes can thus be prepared in a simple, roll-to-roll ready, one-step process. In this initial study, BCP craze formation and filtration performance were characterized for various polymer types, molecular weights, and thicknesses. Furthermore, all these factors influenced the BCP’s thin film morphology, mechanical performance, deformation mechanism, and ultimately filtration performance. This work demonstrates a possible new path toward achieving scalable, BCP-based ultrafiltration membranes.
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