蓝色能量收集的二维纳米流体

L. Xie, Jiadong Tang, Runan Qin, Jingbing Liu, Qianqian Zhang, Yuhong Jin, Hao Wang
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引用次数: 6

摘要

基于从海洋和河流中获得的离子流的蓝色能量收集提供了清洁、稳定和连续的电力输出,这高度依赖于传导单离子的离子选择膜(ISMs)。近年来,基于二维(2D)纳米流体构建的ISMs由于其易于制作、优异的离子选择性和高的离子通量,在蓝色能量收集方面显示出广阔的应用前景。本文首先提出并讨论了二维纳米流体调节离子传输的原理,包括离子选择性和超快离子传输,这是实现高效蓝色能量收集的两个关键因素。分析了二维纳米流体在蓝色能量收集方面的优势,揭示了本文的必要性。综述了基于几种典型材料的二维纳米流体膜的构建及其在盐度梯度和压力驱动蓝色能量收集方面的最新研究进展。最后,讨论了二维纳米流体膜在蓝色能量收集应用方面存在的挑战,为基于二维纳米流体的高性能蓝色能量收集系统的开发提供了新的见解。
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Two-dimensional nanofluidics for blue energy harvesting
Blue energy harvesting based on the ion flow obtained from seas and rivers provides a clean, stable and continuous electric output that is highly dependent on ion-selective membranes (ISMs) that conduct single ions. In recent years, ISMs constructed based on two-dimensional (2D) nanofluidics have demonstrated promising application prospects in blue energy harvesting due to their facile fabrication, excellent ion selectivity and high ion flux. In this review, the principles of 2D nanofluidics in regulating ionic transport are firstly proposed and discussed, including ion selectivity and ultrafast ion transmission, which are considered as two critical factors for achieving highly efficient blue energy harvesting. The advantages of 2D nanofluidics towards blue energy harvesting are analyzed to reveal the necessity of this review. The construction of 2D nanofluidic membranes based on several typical materials and their recent research advances in salinity gradient- and pressure-driven blue energy harvesting are also summarized in detail. Finally, the existing challenges of 2D nanofluidic membranes regarding blue energy harvesting applications are discussed to provide new insights for the development of high-performance blue energy harvesting systems based on 2D nanofluidics.
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