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刘研


   刘研 博士 硕士生导师




       



       邮箱:ly0201@ahnu.edu.cn

       电话:0553-5910557

       地址:必赢线路检测3003733室


教育与工作经历

  • 2013.09 - 2018.06  中国科学技术大学     博士    导师:江俊 教授

  • 2018.07 - 至今     必赢线路检测3003

讲授课程

  • 物理化学 物理化学实验

  • 结构化学

主持项目

  • 国家自然科学基金青年项目(主持,在研)

  • 必赢线路检测3003博士科研启动基金 (主持,在研)

  • 安徽省青年基金 (主持,在研)

  • 中国科学技术大学青年创新基金 (主持,结题)

研究方向

  • 单原子催化剂的合成与设计、性能与表征

  • 人工智能驱动下的材料预测方法

  • 高效催化剂的理论设计与机理探究

  • 复合光催化体系表界面性质的理论模拟


           本课题组与清华大学李亚栋院士、中国科学技术大学江俊教授、中南大学王梁炳教授等均有相关课题的合作,本课题组同学均可前往交流学习,表现优异者可推荐前往攻读博士学位。欢迎有志青年的加入(每年在物化专业招收硕士2-3名)!

课题组成员

张文状(2018级) 

郑亚敏(2019级) 董盼盼 (2019级)

陈慧妹(2020级)  张双双(2020级)

汪刚(2021级)焦驰(2021级)

杨妍(2022级)

林宇韬(2023级)

祝贺郑亚敏同学获得必赢线路检测3003“科研达人”奖学金!!!

代表论文

(1) Yan Yang#, Gang Wang#, Changwei Liu#, Yutao Lin, Chi Jiao, Qingqing Chen, Zhiwen Zhuo*, Junjie Mao*, and Yan Liu*. Asymmetrically Coordinated Calcium Single Atom for High-Performance Oxygen Reduction. Inorg. Chem. 2024, 63, 13086-13092. (JCR一区,IF=4.3)

(2) Tao Lin, Tao Chen, Chi Jiao, Haoyu Zhang, Kai Hou, Hongxiang Jin, Yan Liu*, Wenkun Zhu*, and Rong He*. Ion Pair Sites for Efficient Electrochemical Extraction of Uranium in Real Nuclear Wastewater. Nat. Commun. 2024, 15, 4149. (JCR一区,IF=16.6)

(3) Yan Yang#, Gang Wang#, Shuangshuang Zhang, Chi Jiao, Xiaoyan Wu, Chengbin Pan, Junjie Mao*, and Yan Liu*. Born in the Second Coordination Sphere of Fe Single Atom Boosts the Oxygen Reduction Reaction. ACS Appl.Mater. Interfaces 2024, 61, 16224-16231. (JCR一区,IF=9.5)

(4)Jiejie Li#, Chi Jiao#, Yang Lin, Yuanhao Li, Zishu Qian,HuanhuanLiu, Tao Chen, Yan Liu*, Rong He*, and Wenkun Zhu*. Layered Charge Separation in Surface Boron Doped Copper with Phosphate Groups Boosts the Electrochemical Uranium Extraction from Seawater. Appl. Catal., B 2024, 347, 123770. (JCR一区,IF=22.1)

(5)Yan Liu#*, Huimei Chen#, Yan Yang, Chi Jiao, Wenkun Zhu, Yaping Zhang, Xiaojun Wu, JunjieMao* and Zhiwen Zhuo*. Atomically Inner Tandem Catalysts for Electrochemical Reduction of Carbon Dioxide. Energy Environ. Sci. 2023,16, 5185-5195(JCR一区,IF=39.741)

(6)Huimei Chen#, Yan Yang#, Chi Jiao, Zhiwen Zhuo*, Junjie Mao*, and Yan Liu*. Theoretical Screening of Cooperative N-Bridged Dual-Atom Sites for EfricientElectrocatalytic Nitrogen Reduction with Remolding Insight. Nano Res. 2024, 17, 3413-3422. (JCR一区,IF=9.9)

(7)Wang Liu, Yan Yang, Ru Cheng, Xudong Wu, Tao Chen, Rong He*, Yan Liu*, Wenkun Zhu*Facet-Dependent Electrochemical Uranium Extraction in Seawater over Fe3O4 Catalysts. Sep. Purif. Technol. 2023, 319, 124054. (JCR一区,IF=8.6)

(8) Yingxia Zhao, Qunlei Wen, Danji Huang, Chi Jiao, Youwen Liu*, Yan Liu*, Jiakun Fan, Ming Sun, and Lin Yu*. Operando Reconstruction toward Dual-Cation-Defects Co-Containing NiFe Oxyhydroxide for Ultralow Energy Consumption Indusrial Water Splitting Electrolyzer. Adv Energy Mater. 2023, 13, 2203595. (JCR一区,IF=29.698)

(9) Yan Liu*, Shuangshuang Zhang, Chi Jiao, Huimei Chen, Gang Wang, Wenjie Wu, Zhiwen Zhuo, and Junjie Mao*. Axial Phosphate Coordination in Co Single Atoms Boosts Eletrochemical Oxygen Evolution. Adv. sci. 2023, 10, 2206107. (JCR一区,IF=17.521)

(10) Ruoou Yang, Junyuan Duan, Panpan Dong, Qunlei Wen, Mao Wu, Youwen Liu*, Yan Liu*, Huiqiao Li, and Tianyou Zhai*. In Situ Halogen-Ion Leaching Regulates Multiple Sites on Tandem Catalysts for Efficient CO2 Electroreduction to C2+ Products. Angew. Chem. Int. Ed. 2022, 134, e202116706. (JCR一区,IF=15.336)

(11) Min Liu, Huimei Chen, Xingrui Tang, Huanhuan Liu, Boyuan Tu, Weicong Guo, Yamin Zheng, Yan Liu*, Yongjian Tang, Rong He*, and Wenkun Zhu*. Synthesis of Uranium Single Atom from Radioactive Wastewater for Enhanced Water Dissociation and Hydrogen Evolution. Small, 2022, 18, 2107444.  (JCR一区,IF=13.281)

(12) Huanhuan Liu, Jia Lei, Jiali Chen, Ye Li, Changyao Gong, Shangjie Yang, Yamin Zheng, Ning Lu, Yan Liu*, Wenkun Zhu*, and Rong He*. Hydrogen-Incorporated Vanadium Dioxide Nanosheets Enable Efficient Uranium Confinement and Photoreduction. Nano Res. 2022, 15, 2943-2951. (JCR一区,IF=10.269)

(13) Jun Ding#, Yan Liu#, Ang Li#, Qingqing Chen, Panpan Dong, Junjie Mao*, and  Xianwen Wei*. Highly Dispersed Cr Oxygenated Species on Pt Nanowire Assemblies for Enhanced Electrocatalytic Methanol Oxidation. Chem. Comm. 2022, 58, 799-802. (JCR一区,IF=6.378)

(14) Huanhuan Liu, Jia Lei, Changchao Gong, Ye Li, Huimei Chen, Jiali Chen, Fengchun Wen, Dengjiang  Fu, Yan Liu*, Wenkun Zhu*, and Rong He*. In-Situ Oxidized Tungsten Disufide Nanosheets Achieve Ultrafast Photocatalytic Extraction of Uranium Through Hydro-Mediated Bindind and Redction. Nano Res. 2022, 15, 8810-8818. (JCR一区,IF=10.269)

(15) Xingrui Tang#, Yan Liu#, Min Liu, Huimei Chen, Pengling Huang, Haoming Ruan, Yamin Zheng, Fan Yang, Rong He*, and Wenkun Zhu*. Sulfur Edge in Molybdenum Disulfide Nanosheets Achieves Efficient Uranium Binding and Eletrocatalytic Extration in Seawater. Nanoscale 2022, 14, 6285. (JCR一区,IF=8.307)

(16) Gang Wang#, Yan Liu#, Jiangwei Zhang#, Qingqing Chen, Kai Fang, and Junjie Mao*. Engineering of Bi-S3 and Sulfur-Vacancy Dual Sites for Efficient Photocatalytic N-alkylation of amines. J. Mater. Chem. A 2022, 10, 21349.(JCR一区,IF=14.511)

(17) Gang Wang#, Yan Liu#, Ning Zhao#, Huimei Chen, Wenjie Wu, Yueyue Li, Xiangwen Liu, Ang Li, Wenxing Chen, and Junjie Mao*. Constructing the Separation Pathway for Photo-generated Carries by Diatomic Sites Decorated on MIL-53-NH2(Al) for Enhanced Photocatalytic Performance. Nano Res. 2022, 15, 7034-7041. (JCR一区,IF=10.269)

(18) Yan Liu*, Yamin Zheng, Panpan Dong, Wenzhuang Zhang, Wenjie Wu and Junjie Mao*, Atomically Dispersed Cu Anchored on Nitrogen and Boron co-doped Carbon Nanosheets for Enhancing Catalytic Performance. ACS Appl. Mater. Interfaces 2021, 13, 61047-61054. (JCR一区,IF=9.229)

(19) Yan Liu#, Guoxing Zhu#, Ang Li#, Jiajing Pei, Yamin Zheng, Wenxing Chen, Jun Ding, Wenjie Wu, Tao Wang, Dingsheng Wang, and Junjie Mao*. Transforming Cobalt Hydroxide Nanowires into Single Atom Site Catalysts. Nano Energy 2021, 83, 105799. (JCR一区,IF=17.881)

(20) Yan Liu, Wenzhuang Zhang, Yamin Zheng, Konglin Wu, Panpan Dong, Rong He, Ning Lu, and Junjie Mao*. Single-Atom Fe-N4 Site for Hydrogenation of NitrobenzeneTheoretical and Experimental Study. Dalton Trans. 2021, 50, 7995-8001. (JCR一区,IF=4.390)

(21) Yan Liu, Yamin Zheng, Panpan Dong, Ning Lu, Ruirui Zhang, and Junjie Mao*. Ligand-Mediated Strategy for the Fabrication of Hollow Fe-MOFs and their Derived Fe/NC Nanostructures with an Enhanced Oxygen Reduction Reaction. CrystEngComm  2021, 23, 528-532.  (JCR二区,IF=3.545)

(22) Wenjie Wu#, Yan Liu#, Dong Liu, Wenxing Chen, Zhaoyi Song, Ximin Wang, Yamin Zheng, Ning Lu, Chunxia Wang*, Junjie Mao*, and Yadong Li. Single Copper Sites Dispersed on Hierarchically Porous Carbon for Improving Oxygen Reduction Reaction towards Zinc-air Battery. Nano Res. 2021, 14, 998-1003. (JCR一区,IF=8.897)

(23) Junjie Mao, Chun-Ting He, Jiajing Pei, Yan Liu, Jun Li, Wenxing Chen, Dongsheng He, Dingsheng Wang*, and Yadong Li. Isolated Ni Atoms Dispersed on Ru Nanosheets: High-Performance Electrocatalysts toward Hydrogen Oxidation Reaction. Nano Lett. 2020, 20, 3442-3448. (JCR一区,IF=11.189)

(24) Junjie Mao, Jun Li, Jiajing Pei, Yan Liu, Dingsheng Wang*, and Yadong Li. Structure Regulation of Noble-Metal-Based Nanomaterials at an Atomic Level. Nano Today 2019, 26, 164-175. (JCR一区,IF=20.722)

(25) Yan Liu#,Qing Zhu#, Xiyu Li, Guozhen Zhang, Yudan Liu, Shaobin Tang, Edward Sharman, Jun Jiang*, and Yi Luo. Combining High Photocatalytic Activity and Stability via Subsurface Defects in TiO2. J. Phys. Chem. C 2018, 122, 17221-17227. (JCR二区,IF=4.126)

(26) 刘研; 张国桢; 江俊; 极化电荷设计调控纳米复合体系的能带结构, 科学通报,  2018, 63(33).

(27) Tao-Tao Zhuang#, Yan Liu#, Yi Li#, Yuan Zhao, Liang Wu, Jun Jiang*, and Shu-Hong Yu*. Integration of Semiconducting Sulfides for Full-Spectrum Solar Energy Absorption and Efficient Charge Separation, Angew. Chem. Inter. Ed. 2016, 55, 6396-6400. (JCR一区,IF=15.336)

(28) Ran Long#, Yu Li#, Yan Liu#, Shuangming Chen, Xusheng Zheng, Chao Gao, Chaohua He, Nanshan Chen, Zeming Qi, Li Song, Jun Jiang, Junfa Zhu, and Yujie Xiong*. Isolation of Cu Atoms in Pd Lattice: Forming Highly Selective Sites for Photocatalytic Conversion of CO2 to CH4, J. Am. Chem. Soc. 2017, 139, 4486-4492. (JCR一区,IF=15.419)



欢迎各位有志青年的加盟!




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