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通过功能化氮化硼膜实现超快、稳定的离子和分子筛分

Ultrafast, Stable Ionic and Molecular Sieving through Functionalized Boron Nitride Membranes.

作者信息

Chen Cheng, Qin Si, Liu Dan, Wang Jiemin, Yang Guoliang, Su Yuyu, Zhang Liangzhu, Cao Wei, Ma Ming, Qian Yijun, Liu Yuchen, Liu Jefferson Zhe, Lei Weiwei

机构信息

Institute for Frontier Materials , Deakin University , Locked Bag 2000 , Geelong , Victoria 3220 , Australia.

ARC Centre of Excellence for Electromaterials Science (ACES), Deakin University , Geelong , Victoria 3216 , Australia.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 21;11(33):30430-30436. doi: 10.1021/acsami.9b08296. Epub 2019 Aug 2.

Abstract

Porous membranes play an important role in the separation technologies such as gas purification, solute nanofiltration, and desalination. An ideal membrane should be thin to maximize permeation speed, have optimum pore sizes to maximize selectivity, and be stable in various harsh conditions. Here, we show that the nanometer-thick membrane prepared by means of filtration of functionalized boron nitride (FBN) water suspensions can block solutes with hydrated radii larger than 4.3 Å in water. The FBN membranes with abundant nanochannels reduce the path length of ions. As molecular sieves, the FBN membrane can permeate small ions at an ultrahigh rate-a 25-fold enhancement compared with that of its theoretical diffusion rate and much higher than the graphene oxide membrane. Importantly, the FBN membrane exhibits excellent permeability even when it is immersed in acidic, alkaline, and basic salts solutions because of its intrinsic chemical stability. The molecular dynamics simulations further confirmed that the nanocapillaries formed within the FBN membrane in the hydrated state were responsible for high permeation performance. The simple vacuum filtration fabricated FBN membrane with angstrom-sized channels and ultrafast permeation of ions promises great potential applications in the areas of barrier separation and water purification.

摘要

多孔膜在气体净化、溶质纳滤和海水淡化等分离技术中发挥着重要作用。理想的膜应该很薄以最大化渗透速度,具有最佳孔径以最大化选择性,并且在各种苛刻条件下都稳定。在此,我们表明通过过滤功能化氮化硼(FBN)水悬浮液制备的纳米厚膜可以在水中阻挡水合半径大于4.3 Å的溶质。具有丰富纳米通道的FBN膜缩短了离子的传输路径。作为分子筛,FBN膜能够以超高速率渗透小离子——与其理论扩散速率相比提高了25倍,且远高于氧化石墨烯膜。重要的是,由于其固有的化学稳定性,FBN膜即使浸入酸性、碱性和碱性盐溶液中也表现出优异的渗透性。分子动力学模拟进一步证实,水合状态下FBN膜内形成的纳米毛细管是高渗透性能的原因。通过简单真空过滤制备的具有埃级尺寸通道和离子超快渗透的FBN膜在屏障分离和水净化领域具有巨大的潜在应用前景。

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