陈仕谋头像

陈仕谋

教授

研究方向:能源材料、储能技术

学历:博士研究生毕业

  • 部门: 材料科学与工程学院
  • ORCID:
  • DBLP:

10 访问

  • 电子邮箱: chensm@buct.edu.cn
  • 办公地址: 化纤楼218

个人简介

陈仕谋,北京化工大学材料科学与工程学院教授,博士生导师。

主要从事锂离子电池、固态电池、钠离子电池、锌离子电池关键材料、储能器件及产业应用等方面的研究。在J. Am. Chem. Soc.; Angew. Chem. Int. Ed.; Adv. Mater.; Energy Environ. Sci.; ACS Nano; Adv. Funct. Mater.等杂志发表SCI论文160余篇,授权国家发明专利30余项。承担国家重点研发计划课题,国家自然科学基金委杰青、优青、面上、重大研究计划培育,中科院纳米先导专项课题,北京市科委重大项目、郑州市重大专项等10余项课题。曾获2014离子液体与绿色过程青年创新奖,2017年中科院百人计划终期考核优秀,2017年入选江苏省双创人才,2018年入选“智汇郑州”国家级领军人才,2019年获得国家自然科学基金委优青项目资助,2023年入选英国皇家化学会会士,2024年获得国家自然科学基金委杰青项目资助。


教育经历

入学时间 毕业时间 学位授予单位 学历
2002-09-01 2007-12-31 中国科学院上海应用物理研究所 博士研究生毕业
1998-09-01 2002-07-01 郑州大学 大学本科毕业

工作经历

起始年月 截止年月 所在单位名称
2021-03-03 至今 北京化工大学
2021-03-01 至今 北京化工大学
2012-04-28 2021-03-02 中国科学院过程工程研究所
2012-04-01 2021-02-01 中国科学院过程工程研究所
2011-03-01 2012-04-27 日本国立物质材料研究机构
2011-03-01 2012-04-01 日本国立物质材料研究所
2008-04-28 2011-02-28 名古屋大学
2008-04-01 2011-02-01 名古屋大学
2007-01-01 2008-04-27 中国科学院上海应用物理研究所
2007-01-01 2008-04-27 中国科学院上海应用物理研究所

社会职务

担任Infomat; SusMat; Nano Research Energy; InfoScienceAdv. Powder Mater.等期刊编委/青年编委。受邀担任IEEE PES储能技术委员会委员、中国可再生能源学会储能专业委员会委员、北京市科委新能源汽车重点项目指南编制专家、北京市军民融合重点产品和关键技术标准制定专家。

社会活动

研究领域

主要从事锂离子电池、固态电池、锌离子电池关键材料及器件集成等方面的研究。

本科生课程

课程名称 开课学年 课程总学时 选课人数 课程性质
科研实训高级研讨课(Ⅱ) 2022 48 1 实践环节必修
科研实训高级研讨课(Ⅰ) 2022 32 1 实践环节必修
科研实训高级研讨课(Ⅱ) 2021 48 1 实践环节必修
科研实训高级研讨课(Ⅰ) 2021 32 1 实践环节必修

研究生课程

课程名称 开课学年 总学时 开课方式
新能源材料与器件 2024 32 A公共基础课
新能源材料与器件 2023 32 A公共基础课
新能源材料与器件 2022 32 A公共基础课
新能源材料与器件 2021 32 A公共基础课

校级项目

纵向项目

  • 1. 二次电池高安全电解质 ,国家自然科学基金项目,项目时间:2025-01-01 至 2029-12-31
  • 2. 宽温域高离子导长寿命卤(氧)化物固态电解质调控及热稳定性研究 ,省、市、自治区科技项目,项目时间:2025-01-01 至 2027-12-31
  • 3. XJZ2024010017 ,主管部门科技项目,项目时间:2023-11-01 至 2025-11-01
  • 4. XJZ2023010002 ,国务院其他部门,项目时间:2022-12-23 至 2026-11-30
  • 5. 离子液体固态电解质设计及其在高比能锂金属电池中的应用 ,国家自然科学基金项目,项目时间:2022-01-01 至 2025-12-31
  • 6. 功能电解质材料设计调控及应用 ,国家自然科学基金项目,项目时间:2020-01-01 至 2022-12-31

横向项目

  • 1. 高能量密度电池模块加工和测试 ,企事业单位委托科技项目,项目时间:2023-05-08 至 2023-08-08
  • 2. 基于自修复电解质的高比能固态锂电池研制 ,企事业单位委托科技项目,项目时间:2022-06-17 至 2024-12-31
  • 3. 耐高温离子液体基多元硝酸盐电解液研究 ,无依托项目研究成果,项目时间:2021-09-01 至 2022-12-31

论文信息

[+][-]代表性论文
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01
[+][-] 2030年
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01
[+][-] 2029年
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01
[+][-] 2028年
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01
[+][-] 2027年
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01
[+][-] 2026年
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01
[+][-] 2025年
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01
[+][-] 2024年
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01
[+][-] 2023年
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01
[+][-]2023年之前
  • 1. DOI Yu, Min,Zhao, ShunShun,肖莹,Zhang, Ruixin,Liu, Lili,陈仕谋
    High-Performance Zinc-Ion Battery Enabled by Tuning the Terminal Group and Chain Length of PEO-based Oligomers[期刊论文],Batteries and Supercaps,2023-03-01
  • 2. DOI Ming Zhao,Yanqun Lv,Shunshun Zhao,肖莹,牛津,杨琪,邱介山,王峰,陈仕谋
    Simultaneously Stabilizing both Electrodes and Electrolytes by a Self-Separating Organometallics Interface for High Performance Zinc-Ion Battery at Wide Temperatures. [期刊论文],Advanced Materials,2022-12-30
  • 3. DOI 缪悦,肖莹,胡世霖,陈仕谋
    Chalcogenides metal-based heterostructure anode materials toward Na+-storage application[期刊论文],Nano Research,2022-10-20
  • 4. DOI Wan, Shuang,Ma, Weiting,肖莹,陈仕谋
    High-Voltage and Fast-Charge Electrolytes for Lithium-Ion Batteries[期刊论文],BATTERIES & SUPERCAPS,2022-10-01
  • 5. DOI Lv, Yanqun,Zhao, Ming,杜亚东,康羽,肖莹,陈仕谋
    Engineering a self-adaptive electric double layer on both electrodes for high-performance zinc metal batteries[期刊论文],ENERGY & ENVIRONMENTAL SCIENCE,2022-09-01
  • 6. DOI 肖莹,缪悦,万爽,Yang-Kook Sun,陈仕谋
    Synergistic Engineering of Se Vacancies and Heterointerfaces in Zinc-Cobalt Selenide Anode for Highly Efficient Na-Ion Batteries[期刊论文],Small,2022-06-16
  • 7. DOI 赵明,Rong, Junfeng,Huo, Feng,Lv, Yanqun,Yue, Bowen,肖莹,Chen, Yong,Hou, Guolin,邱介山,陈仕谋
    Semi-Immobilized Ionic Liquid Regulator with Fast Kinetics toward Highly Stable Zinc Anode under ?35 to 60?°C[期刊论文],Advanced Materials,2022-01-01
  • 8. DOI Yanqun Lv,肖莹,Ma, Longtao,Zhi, Chunyi,陈仕谋
    Recent Advances in Electrolytes for "Beyond Aqueous" Zinc-Ion Batteries[期刊论文],ADVANCED MATERIALS,2022-01-01

软件著作

专利

  • 1. 一种无碳Fe7Se8基储钠电极材料的制备方法及应用 ,202211098599.8
  • 2. 一种高振实密度同源异质结构FeSe电极材料及制备方法

荣誉及奖励

招生信息