个人资料![]() |
姓名: 刘欣 学位: 博士 毕业院校: 澳大利亚阿德莱德大学 邮件: liu.xin@hrbust.edu.cn 办公地点: 哈尔滨理工大学 电话: 15765875621 出生年月: 1990-03 学科: 电子科学与技术 |
相关教师 |
个人简历教授,博士生导师,人社部高层次留学人才、哈尔滨理工大学“骨干人才”计划入选者。哈尔滨工业大学学士、硕士,澳大利亚阿德莱德大学博士。主要从事“电化学表界面结构的演化机理及电极材料设计”方面的研究。从真实电化学环境模拟、电极材料设计和反应机理解析等方面逐步深入,取得了一系列重要的创新性学术成果,累计发表SCI收录论文34篇,其中21篇影响因子大于10,2篇入选ESI热点论文(前1‰)、5篇入选ESI高被引论文(前1%)。以第一作者/通讯作者在Nature Communications、Journal of the American Chemical Society、Advanced Materials、ACS Catalysis、Nano Energy、ACS Energy Letters、Chemical Engineering Journal等国际学术期刊上发表高水平学术论文11篇。文章总引超过5000次,H指数为25(3/2024,Google Scholar),并荣获2020年度国家优秀自费留学生奖(该奖项每年全球授予人数少于500人),阿德莱德大学Doctoral Thesis Excellence奖等。 教育经历
工作经历研究方向
承担项目1.哈尔滨理工大学骨干人才启动经费主持; 2.人社部高层次留学人才回国项目; 3.国家自然科学基金项目。 教学工作
招生信息招生计划: 每年计划招收博士研究生1-2名;硕士研究生6-8名。 招生要求:
专利成果出版著作发表论文1. Liu X., Jiao Y., Zheng Y., Jaroniec M., Qiao S.Z., Mechanism of C-N bonds formation in electrocatalytic urea production revealed by ab initio molecular dynamics simulation, Nature Communications, 2022, 13, 5471. 2. Liu X., Jiao Y., Zheng Y., Jaroniec M., Qiao S.Z.*, Building up a Picture of the Electrocatalytic Nitrogen Reduction Activities of Transition Metal Single Atom Catalysts, Journal of the American Chemical Society, 2019, 141, 9664-9672. 3. Liu X., Jiao Y., Zheng Y., Qiao S.Z., Isolated Boron Sites for Electroreduction of Dinitrogen to Ammonia, Acs Catalysis, 2020, 10, 1847-1854. 4. Liu X., Jiao Y., Zheng Y., Davey K. Qiao S.Z., Computational Study on Pt , Ru Dimers Supported on Graphene for Hydrogen Evolution Reaction: New Insight into the Alkaline Mechanism, Journal of materials chemistry A, 2019, 7, 3648-3654. 5. Liu X., Sun F, Qu Z, et al., The effect of functional groups on the SO2 adsorption on carbon surface I: A new insight into noncovalent interaction between SO2 molecule and acidic oxygen-containing groups, Applied Surface Science, 2016, 369: 552-557. 6. Jin H.Y.#, Liu X.#, Chen S.M., Vasileff A., Li L.Q., Jiao Y., Song L., Zheng Y., Qiao S.Z., Heteroatom-doped Transition Metal Electrocatalysts for Hydrogen Evolution Reaction, ACS Energy Letters, 2019, 4, 805-810. 7. Jin H.Y.#, Li L.Q.#, Liu X.#, Tang C., Xu W.J., Chen S.M., Song L., Zheng Y., Qiao S.Z., Nitrogen Vacancies on Two-Dimensional Layered W2N3: AStable and Efficient Active Site for Nitrogen Reduction Reaction, Advanced Materials, 2019, 31(32), 1902709. 8.Jin H. Y.#, Liu X.#, Jiao Y., VasileffA.,ZhengY., QiaoS.Z., Constructing Tunable Dual Active Sites on two-dimensional C3N4@ MoN Hybrid for Electrocatalytic Hydrogen Evolution, Nano Energy, 2018, 53, 690-697. 9. Fu S. J.#, Liu X.#, JiaoY.,QiaoS.Z., CO2 Reduction by Single Copper Atom Supported on g-C3N4 with Asymmetrical Active Sites, Applied Surface Science, 2021, 540, 148293. 10. Sun F.#, Liu X.#, Gao J, et al. Highlighting the role of nitrogen doping in enhancing CO2 uptake onto carbon surfaces: a combined experimental and computational analysis, Journal of materials chemistry A, 2016, 4(47): 18248-18252. 11. Chen M. H.*, Meng H. Y., Wang F.*, Liu Q., Liu Y. B., Liu X.*, Chen Q. G., Chen Z.*, Dispersed Mn2Co2C nanoparticles in interconnected nitrogen-doped carbon framework as cathode catalysts for efficient and long-life Li-CO2 batteries, Chemical Engineering Journal, 2023, 455: 140564. 荣誉称号 |