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受生物启发引入苯丙氨酸可增强层层沉积聚电解质膜的离子选择性。

Bio-inspired incorporation of phenylalanine enhances ionic selectivity in layer-by-layer deposited polyelectrolyte films.

作者信息

Percival Stephen J, Russo Sara, Priest Chad, Hill Ryan C, Ohlhausen James A, Small Leo J, Rempe Susan B, Spoerke Erik D

机构信息

Sandia National Laboratories, PO Box 5800, MS 1411, Albuquerque, NM 87185, USA.

出版信息

Soft Matter. 2021 Jul 7;17(26):6315-6325. doi: 10.1039/d1sm00134e.

Abstract

The addition of a common amino acid, phenylalanine, to a Layer-by-Layer (LbL) deposited polyelectrolyte (PE) film on a nanoporous membrane can increase its ionic selectivity over a PE film without the added amino acid. The addition of phenylalanine is inspired by detailed knowledge of the structure of the channelrhodopsins family of protein ion channels, where phenylalanine plays an instrumental role in facilitating sodium ion transport. The normally deposited and crosslinked PE films increase the cationic selectivity of a support membrane in a controllable manner where higher selectivity is achieved with thicker PE coatings, which in turn also increases the ionic resistance of the membrane. The increased ionic selectivity is desired while the increased resistance is not. We show that through incorporation of phenylalanine during the LbL deposition process, in solutions of NaCl with concentrations ranging from 0.1 to 100 mM, the ionic selectivity can be increased independently of the membrane resistance. Specifically, the addition is shown to increase the cationic transference of the PE films from 81.4% to 86.4%, an increase on par with PE films that are nearly triple the thickness while exhibiting much lower resistance compared to the thicker coatings, where the phenylalanine incorporated PE films display an area specific resistance of 1.81 Ω cm2 in 100 mM NaCl while much thicker PE membranes show a higher resistance of 2.75 Ω cm2 in the same 100 mM NaCl solution.

摘要

在纳米多孔膜上逐层(LbL)沉积的聚电解质(PE)膜中添加常见氨基酸苯丙氨酸,相较于未添加该氨基酸的PE膜,可提高其离子选择性。添加苯丙氨酸的灵感来源于对蛋白质离子通道视紫红质家族结构的详细了解,其中苯丙氨酸在促进钠离子运输中发挥着重要作用。正常沉积和交联的PE膜以可控方式提高支撑膜的阳离子选择性,较厚的PE涂层可实现更高的选择性,这反过来也会增加膜的离子电阻。虽然增加离子选择性是我们所期望的,但增加电阻并非如此。我们表明,通过在LbL沉积过程中加入苯丙氨酸,在浓度范围为0.1至100 mM的NaCl溶液中,离子选择性可以独立于膜电阻而增加。具体而言,添加苯丙氨酸可使PE膜的阳离子迁移率从81.4%提高到86.4%,这一增幅与厚度几乎增加两倍的PE膜相当,同时与较厚涂层相比,电阻要低得多,其中掺入苯丙氨酸的PE膜在100 mM NaCl中的面积比电阻为1.81 Ω cm²,而在相同的100 mM NaCl溶液中,厚得多的PE膜显示出更高的电阻,为2.75 Ω cm²。

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