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石墨烯嵌入18-冠-6醚孔道中的水相离子捕获与传输

Aqueous Ion Trapping and Transport in Graphene-Embedded 18-Crown-6 Ether Pores.

作者信息

Smolyanitsky Alex, Paulechka Eugene, Kroenlein Kenneth

机构信息

Applied Chemicals and Materials Division , National Institute of Standards and Technology Boulder , Colorado 80305 , United States.

出版信息

ACS Nano. 2018 Jul 24;12(7):6677-6684. doi: 10.1021/acsnano.8b01692. Epub 2018 Jun 28.

Abstract

Using extensive room-temperature molecular dynamics simulations, we investigate selective aqueous cation trapping and permeation in graphene-embedded 18-crown-6 ether pores. We show that in the presence of suspended water-immersed crown-porous graphene, K ions rapidly organize and trap stably within the pores, in contrast with Na ions. As a result, significant qualitative differences in permeation between ionic species arise. The trapped ion occupancy and permeation behaviors are shown to be highly voltage-tunable. Interestingly, we demonstrate the possibility of performing conceptually straightforward ion-based logical operations resulting from controllable membrane charging by the trapped ions. In addition, we show that ionic transistors based on crown-porous graphene are possible, suggesting utility in cascaded ion-based logic circuitry. Our results indicate that in addition to numerous possible applications of graphene-embedded crown ether nanopores, including deionization, ion sensing/sieving, and energy storage, simple ion-based logical elements may prove promising as building blocks for reliable nanofluidic computational devices.

摘要

通过广泛的室温分子动力学模拟,我们研究了嵌入石墨烯的18-冠-6醚孔中对阳离子的选择性水相捕获和渗透。我们发现,在悬浮的水浸冠醚多孔石墨烯存在的情况下,钾离子会迅速在孔内组织并稳定捕获,而钠离子则不然。结果,不同离子种类在渗透方面出现了显著的定性差异。捕获离子的占有率和渗透行为表现出高度的电压可调性。有趣的是,我们证明了由捕获离子可控地对膜充电可实现概念上直接的基于离子的逻辑运算。此外,我们表明基于冠醚多孔石墨烯的离子晶体管是可行的,这表明其在级联离子基逻辑电路中的实用性。我们的结果表明,除了嵌入石墨烯的冠醚纳米孔有许多可能的应用,包括去离子、离子传感/筛分和能量存储外,简单的基于离子的逻辑元件作为可靠的纳米流体计算设备的构建块可能很有前景。

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