刘利 刘利:副教授,无机化学教研室主任,硕士生导师,工学博士,化学工程与技术专业。
教育与工作经历: 2019-至今 重庆师范大学,无机化学,副教授 2018-2019 重庆师范大学,无机化学,讲师 2013-2018 重庆大学,化学工程与技术,硕博连读 2009-2013 绵阳师范学院,化学,学士
主讲课程: 无机化学,无机及分析化学,无机化学实验
研究方向: 主要从事新能源和功能纳米材料在电化学储能及电催化转化方向的研究工作,包括锂离子电池、超级电容器和电催化制氢等领域。重点开展了表面修饰、形貌调控、元素掺杂、晶面效应等策略对新能源材料电化学性能的优化改性、实验探索和理论研究。
科研项目: 主持重庆市科学技术局项目1项,重庆市教委项目1项,重庆师范大学项目2项,参研重庆市自然科学基金创新发展联合基金重点项目1项,重庆市教委重大项目1项 。
申请专利: [1] 刘利,付文升,曹金明,等. 一种三明治状MxCo9-xSe8@NC核壳纳米立方盒电催化剂及其制备与应用,中国发明专利,202210817519.3(已受理) [2] 刘利,曹金明,赖亚宇,等. 一种核壳结构Cu2O@(Co,Cu)(OH)2纳米立方体电催化剂及其制备和应用,中国发明专利,202211231877.2(已受理)
获奖情况: 2022年 获评“教学优秀奖” 2023年 获评“教学优秀奖”
代表性论文: [1]Li Liu, Jida Chen, Yuanjuan Bai, Ling Fang, Huijuan Zhang, Yu Wang*, Designed synthesis of LiFe0.2Co0.8O2nanomeshes to greatly improve the positive performance in lithium-ion batteries.J. Mater. Chem. A, 2015,3(12): 6671-6678. (IF: 14.511) [2]Li Liu, Huijuan Zhang, Xi Chen, Ling Fang, Yuanjuan Bai, Ruchuan Liu, Yu Wang*, Unique synthesis of sandwiched graphene@(Li0.893Fe0.036)Co(PO4) nanoparticles as high-performance cathode materials for lithium-ion batteries.J. Mater. Chem. A, 2015, 3(23): 12320-12327. (IF: 14.511) [3]Li Liu, Huijuan Zhang, Jiao Yang, Yanping Mu, Yu Wang*, Self-assembled novel dandelion-like NiCo2O4microspheres@nanomeshes with superior electrochemical performance for supercapacitors and lithium-ion batteries.J. Mater.Chem. A, 2015,3(44): 22393-22403. (IF: 14.511) [4]Li Liu, Huijuan Zhang, Jiao Yang, Yanping Mu, Yu Wang*, Fabrication of Fe-doped LiCoO2 sandwich-like nanocomposites as excellent performance cathode materials for lithium ion batteries.Chem. Eur. J, 2015, 21(52): 19104-19111. (IF:5.020) [5]Li Liu, Huijuan Zhang, Yanping Mu, Jiao Yang, Yu Wang*,Porous iron cobaltate nanoneedles array on nickel foam as anode materials for lithium-ion batteries with enhanced electrochemical performance.ACS Appl. Mater. Interfaces, 2016, 8(2): 1351-1359.(IF:10.383) [6]Li Liu, Huijuan Zhang, Ling Fang, Yanping Mu, Yu Wang*, Facile preparation of novel dandelion-like Fe-doped NiCo2O4microspheres@nanomeshes for excellent capacitive property in asymmetric supercapacitors.J. Power Sources, 2016, 327: 135-144.(IF:9.794) [7]Li Liu, Huijuan Zhang, Yanping Mu, Yuanjuan Bai,Yu Wang*, Binary cobalt ferrite nanomesharrays as the advanced binder-free electrode for applications in oxygen evolution reaction and supercapacitors.J. Power Sources, 2016, 327: 599-609.(IF:9.794) [8]Li Liu, Zhiqiang Jiang, Li Fang, Hatitao Xu,Huijuan Zhang, Xiao Gu, Yu Wang*, Probing the crystal plane effect of Co3O4 for enhanced electrocatalytic performance toward efficient overall water splitting.ACS Appl. Mater. Interfaces, 2017, 9(33): 27736-17744. (IF:10.383) [9]Yu Wang1, Li Liu1(共同一作), Yanwei Wang, Ling Fang, Fu Wan, Huijuan Zhang*, Constituent-tunable ternary CoM2xSe2(1-x) (M = Te, S) sandwich- like graphitized carbonbased composites as highly efficient electrocatalysts for water splitting, Nanoscale, 2019, 11, 6108.(IF:8.307) [10]Li Liu*a, Xiao Yanga, Yuanqing Zhaoa, Bingbing Yaoa, Yanhua Hou*b and Wensheng Fu*a, The rational design of Cu2-xSe@(Co,Cu)Se2 core–shell structures as bifunctional electrocatalysts for neutral-pH overall water splitting. Nanoscale, 2021, 13, 1134–1143. (IF:8.307) [11]Xiao Yang, Tao Chen, Li Liu* and Wensheng Fu*, Multipronged Fabrication of Co3Se4 Wrapped intoN-Doped Multiwall Carbon Nanotubes Tangled HollowDodecahedron Framework for Overall Water Splittingunder Benign Condition. Adv. Mater. Interfaces,2021, 8, 2100879. (IF:6.389) [12]Tao Chen, Jinmin Cao, Xiaofang Bao, Yu Peng, Li Liu* and Wensheng Fu*,Co nanoparticles decorated with N-doped carbonnanotubes as high-efficiency catalysts withintrinsic oxidase-like property for colorimetricsensing.RSC Adv., 2021, 11, 39966. (IF:4.036) [13]Li Liu†, Yayu Lai †, Jinming Cao, Yu Peng, Tian Tian* and Wensheng Fu*,Exploring the Antibacterial and Biosensing Applications of Peroxidase-Mimetic Ni0.1Cu0.9S Nanoflower. Biosensors, 2022, 12, 874. (IF:5.743) [14]Haitao Xu*, Li Liu, Jiaojiao Gao,et al., Hierarchical Nanoporous V2O3 Nanosheets Anchored with Alloy Nanoparticles for Efficient Electrocatalysis.ACS Appl. Mater. Interfaces 2019, 11, 38746-38753. (IF:10.383)
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