Amphiphilic Superspreading Polymer Membranes Prepared by Capillary Force‐Driven Self‐Assembly

Author:

Wei Zhong12,Ru Yue2,Jiang Haibin2,Zhang Xiaohong2,Qi Guicun2,Liu Wenlu2,Guo Zhaoyan2,Zhang Liangdong2,Wang Guoyu2,Hu Chenxi2,Jiang Chao2,Wang Xiang2,Li Binghai2,Han Peng2,Qiao Jinliang12ORCID

Affiliation:

1. College of Materials Science and Engineering Beijing University of Chemical Technology Beijing 100029 China

2. Sinopec Beijing Research Institute of Chemical Industry Beijing 100013 China

Abstract

AbstractTo overcome the two main obstacles of large‐scale application of superspreading material, self assembly is used to prepare superspreading polymer membrane (SPPM) in this work. An amphiphilic SPPM is prepared by capillary force‐driven self assembly using PP melt‐blown nonwovens and polyvinyl alcohol (PVA). The prepared SPPM has low preparation cost and stable performance since self assembly needs low energy consumption, and the production is thermodynamically stable. By using cryo‐electron microscopy, transmission electron microscopy, X‐ray photoelectron spectrum and scanning electron microscope with energy dispersive X‐ray spectroscopy. It is proved that PVA is successfully assembled on the fiber surface of PP melt‐blown nonwovens. The prepared SPPM has excellent spreading performance, the “spreading times” of both water and oil are less than 0.5 s. They showed much superior performance compared to traditional materials when applied in oil‐water separation, seawater desalination, and ion separation. This work will definitely promote the development of self assembly, superspreading materials, and related sciences.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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