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Ultrathin amphiphilic membranes polymerized from hydrophobic terpenoids and hydrophilic polyamines for versatile organic solvent nanofiltration

纳滤 两亲性 溶剂 有机溶剂 化学 聚合 界面聚合 有机化学 萜类 高分子化学 化学工程 共聚物 聚合物 单体 生物化学 工程类
作者
Meijie Wang,Yunzhuo Xu,Jiamei Sun,Dai Shi,Youqing Tian,Hanyang Liu,Beili Lu,Lirong Tang,Jianhua Lv,Xingzhong Cao,Biao Huang,Xinda You
出处
期刊:Journal of Membrane Science [Elsevier BV]
卷期号:727: 124115-124115 被引量:4
标识
DOI:10.1016/j.memsci.2025.124115
摘要

Ultrathin membranes with fast solvent transport are promising in organic solvent nanofiltration . However, achieving high permeance for both polar and non-polar solvents remain challenging. Here we report ultrathin amphiphilic membranes (UAPMs) polymerized from hydrophobic terpenoid molecules and hydrophilic polyamines that enable fast and versatile solvent transport. The terpenoid carboxylic acid (TCA) in the organic phase react with polyethyleneimine (PEI) in the aqueous phase at the liquid-liquid interface, during which the glutaraldehyde is added into the aqueous phase to enhance the crosslinking of polymeric network and thus forming UAPMs. Regulating the ratio of hydrophilic to hydrophobic components allow for the precise manipulation of the surface polarity of UAPMs, rendering affinity to both polar and non-polar organic solvents. The increased PEI/TCA ratio also provides more amine sites to bind with the carboxylic monomers and thus generating denser and thicker membranes. The optimized UAPM demonstrates high permeance values of 175.9 L m −2 h −1 bar −1 for polar ethanol and 116.5 L m −2 h −1 bar −1 for non-polar n -hexane, with a molecular weight cut-off of 591 Da, which achieves 96.4 % rejection of Reactive Red in ethanol and 94.8 % rejection of Chlorophyll in n -hexane. Our structural design of UAPMs may pave a new avenue for engineering high-performance molecular-separation membranes. Ultrathin amphiphilic membranes enable fast transport of polar and non-polar solvents. • Ultrathin amphiphilic membranes (UAPMs) were polymerized from hydrophobic terpenoids and hydrophilic polyamines. • Terpenoid carboxylic acid react with polyethyleneimine at aqueous-organic interface. • Hydrophilic/hydrophobic component ratio modulates the surface polarity, thickness and density of UAPMs. • UAPMs enable fast permeation for polar and non-polar solvents with high rejection.
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