仿生智能纳米通道的设计构筑及其在浓差电池中的应用

    Design and Construction of Biomimetic Intelligent Nanochannels and Their Applications in Concentration Cells

    • 摘要: 生物体细胞膜上的纳米通道在环境刺激下智能打开和关闭,通过精准调控传输离子种类和离子流通方向,保证细胞内外物质平衡以维持正常生命活动.基于仿生理念,模仿生物纳米通道,构筑具有精确离子输运调控功能的人工智能纳米通道,在生物传感、纳米技术、医疗和能源等领域皆展现出了广阔的应用前景.综述了近年来本课题组在仿生智能纳米通道领域的研究成果,包括纳米通道结构和功能设计、外场响应性离子输运性能构筑及研究,以及其在水系浓差电池中的应用,并展望了仿生智能纳米通道在锂二次电池等重要储能器件中的应用前景,旨在为离子型储能器件的性能优化提供思路.

       

      Abstract: The nanochannels on the cell membrane of an organism are intelligently opened and closed in response to environmental stimuli. By precisely controlling the types of ions and the direction of ion flow, the material balance inside and outside the cell is maintained to keep normal life activities. Based on the concept of bionics, imitating biological nanochannels, artificial intelligence nanochannels with precise ion transport regulation functions was constructed, which shows broad application prospects in the fields of biosensing, nanotechnology, medical and energy. The research results of the our group in the field of biomimetic intelligent nanochannels in recent years were summarized, including the structure and function design of nanochannels, the construction and responsive ion transport behavior in response to external fields, and their applications in water-rich concentration cells. Furthermore, the application prospects of biomimetic intelligent nanochannels in important energy storage devices such as lithium secondary batteries, providing insight to develop high-performance ionic energy storage devices, were presented in this review.

       

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