Self-assembled soft nanoparticle membranes with programmed free volume hierarchyElectronic supplementary information (ESI) available. See DOI: 10.1039/c8ta08618d

Pore hierarchy in polymers is crucial for applications spanning nano-medicine, sustainable energy, and molecular separation. However, polymer free volume hierarchy with ultra-fine sizes (<5 Å) and modularity remains an important but elusive subject of research due to the dynamic, transient and ra...

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Main Authors Wu, Jia-Kai, Wang, Nai-Xin, Hung, Wei-Song, Zhao, Qiang, Lee, Kueir-Rarn, An, Quan-Fu
Format Journal Article
LanguageEnglish
Published 20.11.2018
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Summary:Pore hierarchy in polymers is crucial for applications spanning nano-medicine, sustainable energy, and molecular separation. However, polymer free volume hierarchy with ultra-fine sizes (<5 Å) and modularity remains an important but elusive subject of research due to the dynamic, transient and random nature of free volume cavities. Here we show the construction of hierarchical free volume through the self-assembly of structured polyelectrolyte complex nanoparticles (∼40 nm) in the vacuum filtration process. Membranes with tunable thickness and well-defined nanoparticle structures are prepared, featuring enhanced mechanical strength, flexibility, and more importantly, programmed free volume consisting of intra-particle ( r 1 = 3.22 Å) and inter-particle ( r 2 = 4.45 Å) cavities. Both free volume elements are effectively tuned and the collective fractional free volume is improved 8 times, leading to membrane molecular channels outperforming other polymer membranes in pervaporation dehydration of ethanol. A self-assembled polyelectrolyte complex nanoparticle membrane was prepared, featuring programed free volume hierarchy, 8 times enhanced fractional free volume, and highly improved molecular separation performance in ethanol dehydration.
Bibliography:10.1039/c8ta08618d
Electronic supplementary information (ESI) available. See DOI
ISSN:2050-7488
2050-7496
DOI:10.1039/c8ta08618d