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调控氧化石墨烯添加量以增强金属有机框架衍生材料的电容储能性能

秦永吉 杨净泉 王昊 练美玲 贾沛沛 罗俊 刘熙俊 刘军枫

电化学(中英文)2025,Vol.31Issue(7):18-26,9.
电化学(中英文)2025,Vol.31Issue(7):18-26,9.DOI:10.61558/2993-074X.3548

调控氧化石墨烯添加量以增强金属有机框架衍生材料的电容储能性能

Regulating the Amount of Graphene Oxide for Enhanced Capacitive Energy Storage of MOF Derived Materials

秦永吉 1杨净泉 1王昊 2练美玲 3贾沛沛 1罗俊 1刘熙俊 4刘军枫5

作者信息

  • 1. 电子科技大学,电子科技大学(深圳)高等研究院,深思实验室,广东 深圳 518110
  • 2. 中国中煤能源集团有限公司,北京 100120
  • 3. 中国民航大学交通科学与工程学院,天津市民航能源环境与绿色发展工程研究中心,天津 300300
  • 4. 广西大学资源环境与材料学院,广西有色金属及特色材料加工重点实验室,省部共建特色金属材料与组合结构全寿命安全国家重点实验室,广西 南宁 530004
  • 5. 北京化工大学,化工资源有效利用国家重点实验室,北京 100029
  • 折叠

摘要

Abstract

In pursuit of more efficient and stable electrochemical energy storage materials,composite materials consisting of metal oxides and graphene oxide have garnered significant attention due to their unique structures and exceptional properties.Graphene oxide(GO),a two-dimensional material with an extremely high specific surface area and excellent conductivity,offers new possibilities for enhancing the electrochemical performance of metal oxides.In this work,we synthesized met-al-organic framework(MOF)and GO composites by regulating the amount of GO,and successfully prepared composites of metal oxides supported by nitrogen-doped carbon frameworks and GO through a simple one-step calcination process.Based on the electrochemical tests,the optimal amount of GO was determined.This research will provide new insights into and directions for designing and synthesizing metal oxide and graphene oxide composite materials with an ideal electro-chemical performance.

关键词

金属有机框架/氧化铁/氧化石墨烯/复合材料/超级电容器

Key words

Metal-organic framework/Iron oxide/Graphene oxide/Composite material/Supercapacitor

引用本文复制引用

秦永吉,杨净泉,王昊,练美玲,贾沛沛,罗俊,刘熙俊,刘军枫..调控氧化石墨烯添加量以增强金属有机框架衍生材料的电容储能性能[J].电化学(中英文),2025,31(7):18-26,9.

基金项目

This work was financially supported by the National Natural Science Foundation of Chi-na(51971157),Shenzhen Science and Technology Program(JCYJ20210324115412035,JCYJ202103-24-123202008,JCYJ20210324122803009 and ZDS-YS20210813095534001),Guangdong Foundation for Basic and Applied Basic Research Program(2021A1515110880). (51971157)

电化学(中英文)

OA北大核心

1006-3471

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