
基本信息:
职称:讲师(硕士生导师)
邮箱:xcx9927@126.com
地址:中南林业科技大学经世楼407
个人简介:
徐晨曦,女,中共党员,工学博士,中南林业科技大学化学与化工学院讲师。主要从事碳基功能材料的可控制备及其在能源存储与转换领域的应用基础研究,目前主持国家资助博士后研究人员计划、湖南省自然科学基金青年项目及湖南省教育厅优秀青年项目等多项课题,以第一作者/通讯作者在Nano Mater. Sci., J. Energy Chem.等国内外学术期刊发表SCI论文20余篇,申请/授权发明专利2项,出版英文学术专著1部。
教育经历:
2019.09-2023.06,湖南大学,化学工程与技术,博士
2015.09-2018.06,湖南大学,化学工程与技术,硕士
2011.09-2015.06,天津科技大学,化学工程与工艺,学士
研究方向:
·生物质基功能材料的可控构筑与结构调控
·碳基电催化剂的设计与性能优化(氧还原、析氧、析氢反应等)
·碳基储能材料的开发与器件应用(锂/钠离子电池、锂硫电池、超级电容器等)
主持项目:
·国家资助博士后研究人员计划(C档)
·湖南省自然科学基金青年项目(C类)
·湖南省教育厅优秀青年项目
·教育部产学合作协同育人项目
代表性论文:
[1] Xu C, et al. Identification of Cu–N2 Sites for Zn–air batteries in harsh electrolytes: Computer virtual screening, machine learning, and practical application. CCS Chemistry, 2026, 8, 1607–1621.(中科院一区,IF=9.2)
[2] Xu C, et al. Role of carbon nanotubes in advancing lithium–sulfur battery cathodes: A review. Chemical Engineering Science, 2026, 322, 123168.(中科院二区,IF=5.1)
[3] Xu C,et al. Self–template assisted synthesis of N, S co–doped carbon wrapped Fe3O4/Fe7S8 heterojunction for enhanced sodium storage. Journal of Colloid and Interface Science, 2025, 698, 138052.(中科院一区,IF=9.6)
[4] Xu C, et al. Simultaneously realizing efficient active sites and rapid mass transfer in corrugated plate nanoreactor for oxygen electrocatalysis in Zn–air batteries. Journal of Energy Chemistry, 2024, 97, 612–621.(中科院一区,IF=15.6)
[5] Xu C, et al. Boric acid–assisted pyrolysis for high–loading single–atom catalysts to boost oxygen reduction reaction in Zn–air batteries. Energy Environment Materials, 2024, 7, e12569.(中科院一区,IF=13.8)
[6] Xu C*, et al. Facile and adjustable production of self–standing oxygen–doped graphene membranes for optimized oxygen evolution electrocatalysis. Nano Materials Science, 2025, 7, 231–239.(中科院一区,IF=20.5)
[7] Xu C*, et al.Sulfur–vacancy engineering of Co9S8–x/Ti3C2Tx–MXene catalyst for efficient oxygen evolution reaction. Journal of Colloid and Interface Science, 2025, 683, 694–702.(中科院一区,IF=9.6)
[8] Xu C*, et al. Synthesis of 3D FeS embedded into N, S co–doped carbon nanotube/graphene framework for electrochemical application. International Journal of Hydrogen Energy, 2024, 78, 1016–1023.(中科院二区,IF=9.2)
热忱欢迎优秀本科生及硕士生加入课题组,表现优异者可推荐至国内外知名高校攻读硕士/博士学位!
