Zwitterionic Copolymer-Regulated Interfacial Polymerization for Highly Permselective Nanofiltration Membrane.

Lin, Yuqing; Yao, Xuesong; Shen, Qin; Ueda, Takafumi; Kawabata, Yuki; Segawa, Jumpei; Guan, Kecheng; Istirokhatun, Titik et al. · Nano Lett · 2021

basic_science · Level V

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Abstract

A highly permselective nanofiltration membrane was engineered via zwitterionic copolymer assembly regulated interfacial polymerization (IP). The copolymer was molecularly synthesized using single-step free-radical polymerization between 2-methacryloyloxyethyl phosphorylcholine (MPC) and 2-aminoethyl methacrylate hydrochloride (AEMA) (P[MPC-<i>co</i>-AEMA]). The dynamic network of P[MPC-<i>co</i>-AEMA] served as a regulator to precisely control the kinetics of the reaction by decelerating the transport of piperazine toward the water/hexane interface, forming a polyamide (PA) membrane with ultralow thickness of 70 nm, compared to that of the pristine PA (230 nm). Concomitantly, manipulating the phosphate moieties of P[MPC-<i>co</i>-AEMA] integrated into the PA matrix enabled the formation of ridge-shaped nanofilms with loose internal architecture exhibiting enhanced inner-pore interconnectivity. The resultant P[MPC-<i>co</i>-AEMA]-incorporated PA membrane exhibited a high water permeance of 15.7 L·m<sup>-2</sup>·h<sup>-1</sup>·bar<sup>-1</sup> (more than 3-fold higher than that of the pristine PA [4.4 L·m<sup>-2</sup>·h<sup>-1</sup>·bar<sup>-1</sup>]), high divalent salt rejection of 98.3%, and competitive mono-/divalent ion selectivity of 52.9 among the state-of-the-art desalination membranes.

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