首页|超级电容器用MOFs衍生纳米电极材料分析

超级电容器用MOFs衍生纳米电极材料分析

扫码查看
超级电容器以其高能量密度和高功率密度的特性,在电子器件、能源存储与转换等领域扮演着日益重要的角色.随着科学技术的飞速进步,研究者们正在积极寻找更高效的电极材料以进一步提升超级电容器的性能.金属-有机框架(MOFs)作为一种多孔结构材料,凭借其高比表面积、可控孔径和多样化的功能性,在气体吸附、分离和催化等领域已得到广泛应用.基于这些优势,本文深入探讨了 MOFs衍生纳米电极材料在超级电容器中的应用,旨在为该领域的研究提供有价值的参考.通过这些研究,我们期待MOFs衍生材料能够推动超级电容器性能的飞跃,满足未来能源存储设备的严苛要求.
Analysis of MOF derived nano electrode materials for supercapacitors
Supercapacitors play an increasingly important role in electronic devices,energy storage and conversion due to their high energy density and high power density characteristics.With the rapid advancement of science and technology,researchers are actively seeking more efficient electrode materials to further improve the performance of supercapacitors.Metal organic frameworks(MOFs),as a type of porous structural material,have been widely used in gas adsorption,separation,and catalysis due to their high specific surface area,controllable pore size,and di-verse functionalities.Based on these advantages,this article delves into the application of MOF derived nanoelec-trode materials in supercapacitors,aiming to provide valuable references for research in this field.Through these studies,we expect MOF derived materials to drive a leap in supercapacitor performance and meet the stringent re-quirements of future energy storage devices.

SupercapacitorMOFsDerivative nano electrode materials

孙亚萍

展开 >

朔州职业技术学院,山西朔州 036000

超级电容器 MOFs 衍生纳米电极材料

2025

聚酯工业
全国聚酯生产技术协作组 大连合成纤维研究设计院股份有限公司

聚酯工业

影响因子:0.2
ISSN:1008-8261
年,卷(期):2025.38(1)