黎琼钰 QIONGYU LI

发布时间: 2022-01-07

职称、职务-Title   or Position讲师
联系方式-Contact Informationqyli@njust.edu.cn
主要研究方向-Research Interests低维材料的制备与表征Preparation   and characterization of low dimensional materials
主要讲授课程-Courses大学物理;半导体器件原理College   physics;Principle of semiconductor devices
主要研究项目-Research Projects江苏省自然科学基金委员会,青年项目,大面积CVD双层石墨烯的生长机
     理研究,主持

国家自然科学基金委员会,面上项目,基于双激光拉曼的石墨烯热输运性
     质研究,参与

主要科研成果-Achievement1. Growth of adlayer graphene on   Cu studied by carbon isotope labeling. Nano Letters,2013,SCI 1区.
     2. Study of colors of diamond-like carbon films. SCIENCE CHINA   Physics,Mechanics & Astronomy,2013,SCI 1区.
     3. Controllable seeding of single crystal graphene islands from graphene   oxide flakes. Carbon, 2014, SCI 1区.
     4. Synthesis of amorphous carbon film in ethanol inverse diffusion flames.   Nanomaterials,2018,SCI 2区.
     5. Hydrogen Induced Etching Features of Wrinkled Graphene Domains.   Nanomaterials,2019,SCI 2区.
     6. Performance of chemically synthesized Mn3O4/rGO nanocomposite for   electrochemical supercapacitor: A cost-effective high-performance electrode.   Nanotechnology, 2020,SCI 2区.
     7. Syntheses of large sized single crystal graphene: a review of recent   developments. Surface review letter,2018,SCI 4区.
     8. 基于同位素标定技术CVD石墨烯的生长机制研究。中国科技论文在线,2016.
     9. Prediction of Room-Temperature Ferromagnetism in a Two-dimensional   Direct Band Gap Semiconductor.Nanoscale,2020, SCI 1区.
     10. Tunable Ferroelectric Single-Atom Catalysis of CO Oxidation Using   Pt/In2Se3 Monolayer.Journal of Materials Chemistry A, 2020, SCI 1区.
     11. Ionic gate-controlled room-temperature ferromagnetism in van der Waals   semiconductors. Physical review B, 2021, SCI 1区.
     12. Two-dimensional Metal-free Boron Chalcogenides B2X3 (X=Se and Te) as   Photocaytalysts for Water Splitting Under Visible Light. Nanoscale, 2020, SCI   1区.
     13. Tuning electronic and magnetic properties of two-dimensional   ferromagnetic semiconductor CrI3 through adsorption of benzene.The Journal of   Physical Chemistry, 2020, SCI 1区.
     14. Thermal conductivity measurements of suspended graphene with and   without wrinkles by micro-Raman mapping. Nanotechnology, 2012, SCI 2区.
     15. One-step transfer and doping of large area graphene by ultraviolet   curing adhesive. Carbon,2015,SCI 1区.
     16. Isotope effect of the phonons mean free path in graphene by micro-Raman   measurement. SCIENCE CHINA Physics, Mechanics &Astronomy, 2014,SCI   1区.
     17. Synergistically reinforced lithium storage performance of in situ   chemically grown silicon@ silicon oxide core–shell nanowires on   three-dimensional conductive graphitic scaffolds. Journal of Materials Chemistry   A, 2014, SCI 1区.
     18. Interfacial capacitance of graphene: Correlated differential   capacitance and in situ electrochemical Raman spectroscopy study.   Electrochimica Acta, 2013, SCI 1区.
     19. Millimeter size single crystal graphene by suppressing evaporative loss   of Cu during low pressure chemical vapor deposition. Adv. Mater., 2013, SCI   1区.
     20. Study on the Diffusion Mechanism of Graphene Grown on Copper   Pockets.Small, 2015, SCI 1区.
     21. Polymeric amorphous carbon films with an extended range of optical   gaps. Diamond & Related Materials,2013,SCI 3区.
     22. Quantitative correlation between defect density and heterogeneous   electron transfer rate of single layer graphene. JACS, 2014, SCI 1区.
     23. An etching phenomenon exhibited by chemical vapor deposited graphene on   a copper pocket. Carbon, 2016,SCI 1区.
     24. Graphene-based fluorescence-quenching-related fermi level elevation and   electron concentration surge. Nano Letter, 2016 , SCI 1区.

     专利:一种含氢类金刚石膜的制备方法.ZL201010582867.4,2012.

主要获奖情况-Awards福建省优秀博士论文Excellent   Doctoral dissertation of Fujian Province







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