材料科学
半透膜
渗透
自愈水凝胶
渗透
水溶液
化学工程
毛细管作用
图层(电子)
乳状液
正渗透
水运
油滴
扩散
复合材料
膜
高分子化学
反渗透
化学
水流
有机化学
热力学
工程类
生物化学
物理
环境工程
作者
Sangmin Lee,Biao Che,Meiling Tai,Wanzhao Li,Shin‐Hyun Kim
标识
DOI:10.1002/adfm.202105477
摘要
Abstract Hydrogel shells that compartmentalize the water core from the aqueous surrounding provide molecular selectivity on size and charge in transmembrane transport. It is highly demanding to produce thin hydrogel shells to minimize diffusion length and maximize core volume. Here, internal osmosis in water‐in‐oil‐in‐water‐in‐oil (W/O/W/O) triple‐emulsion droplets is used to produce thin hydrogel shells enclosing a large water core. The triple‐emulsion droplets are prepared to have an ultrathin middle oil layer using a capillary microfluidic device. The innermost water droplet has a higher osmolarity than the outer water layer containing photopolymerizable hydrogel precursors, which pumps water from the outer layer to the core through the ultrathin oil layer by the osmosis. Therefore, the outer layer gets thinner and hydrogel precursors are enriched while the size of the triple‐emulsion droplets remains unchanged. Through photopolymerization of precursors and phase transfer from oil to water, hydrogel shells enclosing water core are produced in the water environment; the oil layer is ruptured for molecular exchange through the shells. The thickness and composition of the hydrogel shells are precisely controllable by the osmotic conditions. The shells show a high permeation rate due to the thinness as well as controlled cut‐off threshold of permeation for neutral and charged molecules.
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