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可持续生物质活性炭作为电池和超级电容器电极的综述

Sustainable Biomass Activated Carbons as Electrodes for Battery and Supercapacitors-A Mini-Review.

作者信息

Dos Reis Glaydson Simões, Larsson Sylvia H, de Oliveira Helinando Pequeno, Thyrel Mikael, Claudio Lima Eder

机构信息

Department of Forest Biomaterials and Technology, Swedish University of Agricultural Sciences, Biomass Technology Centre, SE-901 83 Umeå, Sweden.

Institute of Materials Science, Federal University of Sao Francisco Valley, Juazeiro, BA 48920-310, Brazil.

出版信息

Nanomaterials (Basel). 2020 Jul 18;10(7):1398. doi: 10.3390/nano10071398.

Abstract

Some recent developments in the preparation of biomass carbon electrodes (CEs) using various biomass residues for application in energy storage devices, such as batteries and supercapacitors, are presented in this work. The application of biomass residues as the primary precursor for the production of CEs has been increasing over the last years due to it being a renewable source with comparably low processing cost, providing prerequisites for a process that is economically and technically sustainable. Electrochemical energy storage technology is key to the sustainable development of autonomous and wearable electronic devices. This article highlights the application of various types of biomass in the production of CEs by using different types of pyrolysis and experimental conditions and denotes some possible effects on their final characteristics. An overview is provided on the use of different biomass types for the synthesis of CEs with efficient electrochemical properties for batteries and supercapacitors. This review showed that, from different biomass residues, it is possible to obtain CEs with different electrochemical properties and that they can be successfully applied in high-performance batteries and supercapacitors. As the research and development of producing CEs still faces a gap by linking the type and composition of biomass residues with the carbon electrodes' electrochemical performances in supercapacitor and battery applications, this work tries to diminish this gap. Physical and chemical characteristics of the CEs, such as porosity, chemical composition, and surface functionalities, are reflected in the electrochemical performances. It is expected that this review not only provides the reader with a good overview of using various biomass residues in the energy storage applications, but also highlights some goals and challenges remaining in the future research and development of this topic.

摘要

本文介绍了利用各种生物质残渣制备生物质碳电极(CEs)在电池和超级电容器等储能装置中的一些最新进展。近年来,将生物质残渣用作制备CEs的主要前驱体的应用不断增加,因为它是一种可再生资源,加工成本相对较低,为经济和技术上可持续的工艺提供了前提条件。电化学储能技术是自主和可穿戴电子设备可持续发展的关键。本文重点介绍了通过不同类型的热解和实验条件,各种生物质在CEs生产中的应用,并指出了对其最终特性的一些可能影响。概述了使用不同类型的生物质合成具有高效电化学性能的用于电池和超级电容器的CEs的情况。这篇综述表明,从不同的生物质残渣中可以获得具有不同电化学性能的CEs,并且它们可以成功应用于高性能电池和超级电容器。由于在将生物质残渣的类型和组成与超级电容器和电池应用中碳电极的电化学性能联系起来方面,CEs的研发仍存在差距,这项工作试图缩小这一差距。CEs的物理和化学特性,如孔隙率、化学成分和表面官能团,反映在其电化学性能中。预计这篇综述不仅能让读者很好地了解各种生物质残渣在储能应用中的使用情况,还能突出该主题未来研发中仍存在的一些目标和挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1df4/7407268/633fc6864c24/nanomaterials-10-01398-g001.jpg

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