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Electrospinning as a route to advanced carbon fibre materials for selected low-temperature electrochemical devices: A review

机译:静电纺丝作为用于选定的低温电化学装置的先进碳纤维材料的途径:综述

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摘要

Electrospinning has been proven as a highly versatile fabrication method for producing nano-structured fibres with controllable morphology,of both the fibres themselves and the void structure of the mats.Additionally,it is possible to use heteroatom doped polymers or to include catalytic precursors in the electrospinning solution to control the surface properties of the fibres.These factors make it an ideal method for the production of electrodes and flow media for a variety of electrochemical devices,enabling reduction in mass transport and activation overpotentials and therefore increasing efficiency.Moreover,the use of biomass as a polymer source has recently gained attention for the ability to embed sustainable principles in the materials of electrochemical devices,complementing their ability to allow an increase in the use of renewable electricity via their application.In this review,the historical and recent developments of electrospun materials for application in redox flow batteries,fuel cells,metal air batteries and supercapacitors are thoroughly reviewed,including an overview of the electrospinning process and a guide to best practice.Finally,we provide an outlook for the emerging useof this process in the field of electrochemical energy devices with the hope that the combination of tailored microstructure,surface functionality and computer modelling will herald a new era of bespoke functional materials that can significantly improve the performance of the devices in which they are used.

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  • 来源
    《天然气化学(英文版)》 |2021年第8期|492-529|共38页
  • 作者单位

    The Electrochemical Innovation Lab Dept.of Chemical Engineering University College London Torrington Place WC1E 7JE London UK;

    The Electrochemical Innovation Lab Dept.of Chemical Engineering University College London Torrington Place WC1E 7JE London UK;

    The Electrochemical Innovation Lab Dept.of Chemical Engineering University College London Torrington Place WC1E 7JE London UK;

    The Electrochemical Innovation Lab Dept.of Chemical Engineering University College London Torrington Place WC1E 7JE London UK;

    The Electrochemical Innovation Lab Dept.of Chemical Engineering University College London Torrington Place WC1E 7JE London UK;

    Queen Mary University of London School of Engineering and Materials Science Mile End Road E1 4NS London UK;

    Queen Mary University of London School of Engineering and Materials Science Mile End Road E1 4NS London UK;

    Department of Chemical Engineering University of Waterloo Waterloo ON Canada;

    Department of Chemical Engineering University of Waterloo Waterloo ON Canada;

    Department of Chemical Engineering Imperial College London South Kensington Campus London SW7 2AZ UK;

    Department of Chemical Engineering Imperial College London South Kensington Campus London SW7 2AZ UK;

    Department of Chemical Engineering Imperial College London South Kensington Campus London SW7 2AZ UK;

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  • 入库时间 2022-08-19 04:57:42
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