米立伟 教授
博士生导师、硕士生导师
1979年9月出生,河南孟州人。
♦ 平顶山学院副校长、先进材料研究中心主任
♦ 中原科技创新领军人才(2019)
♦ 河南省科技创新杰出青年(2015)
♦ 河南省创新团队带头人(2015)
♦ 河南省功能盐材料重点实验室主任
♦ 功能性盐产品河南省工程实验室主任
♦ 纺织行业印染降解催化剂重点实验室主任
♦ 河南省化工新材料与纳米加工国际联合实验室主任
电子邮箱:Liwei_Mi@zut.edu.cn,mlwzzu@163.com
研究方向:
1)功能性盐产品开发;2)储能材料与器件;3)MOF/COF设计与性能调控
教育经历:
♦ 郑州大学学士(2002)
♦ 郑州大学硕士(2005)
♦ 郑州大学博士(2008)
♦ 郑州大学博士后(2011)
基金项目:
♦ 国家自然科学基金区域创新发展基金重点支持项目子课题(U21A2077),2022.01-2025.12,主持;
♦ 国家自然科学基金—河南联合基金(U1804126),2019.01 - 2021.12,主持;
♦ 国家自然科学基金—面上项目(21671205),2017.01 - 2020.12,主持;
♦ 国家自然科学基金—柴达木盐湖化工联合基金项目(U1407103),2015.01 - 2017.12,主持;
♦ 国家自然科学基金—青年科学基金项目(21001090),2011.01 - 2013.12,主持;
♦ 中原科技创新领军人才支持计划(204200510014),2020.01 - 2021.12,主持;
♦ 河南省科技创新杰出青年支持计划(164100510007),2016.01 - 2017.12,主持;
♦ 绿色健康盐的加工开发项目,横向项目,主持;
♦ 纯天然科技果蔬洗涤盐升级优化研发,横向项目,主持;
♦ 煤矸石资源综合利用,横向项目,主持。
主要社会兼职:
♦ 政协第十三届河南省委员会常委
♦ 中国青年科技工作者协会理事
♦ 第三届河南省青年科技工作者协会副会长
♦ 九三学社河南省第九届委员会常委
♦ ES Energy & Environment期刊编委会委员
近期研究论文:
长期从事结晶化学、纳米加工和储能材料等方面的研究,发表被SCI收录论文234篇,其中ESI高被引论文8篇,被引用7311次,h因子47;授权国家发明专利59件;出版学术专著2部。围绕营养健康盐、日用洗化盐、美化装饰盐、工程建筑盐开发出系列功能性盐产品,相关研究成果受到《中国科学报》、《科学网》、《河南日报》、《大河网》、《河南电视台》、《新浪网》等多家媒体的持续关注。
1. Siwei Cui, Junpeng Wng, Liwei Mi*, Kongyao Chen, Wenying Ai, Lipeng Zhai, Xiaoyan Guan, Youbin Zheng*, and Daoai Wang*, A new synergetic system based on triboelectric nanogenerator and corrosion inhibitor for enhanced anticorrosion performance, Nano Energy, 2022, 91, 106696.
2. Wutao Wei, Jiaqiang Xu, Weihua Chen, Liwei Mi*, and Jiujun Zhang*, A review of sodium chloride-based electrolytes and materials for electrochemical energy technology, J. Mater. Chem. A, 2022, 10, 2637-2671.
3. Kongyao Chen, Gaojie Li, Zhihan Hu, Yanjie Wang, Deyilan, Zhen Li, Aiwei Zhao, Yanling Feng, Bingbing Chen, Weihua Chen*, Liwei Mi*, and Yunhui Huang*, Construction of γ-MnS/α-MnS hetero-phase junction for high-performance sodium-ion batteries, Chem. Eng. J., 2022, 435, 135149.
4. Lipeng, Zhai, Gaojie Li, Xiubei Yang, Sodam Park, Diandian Han, Liwei Mi*, Yanjie Wang, Zhongping Li*, and Sang-Young Lee*, 30 Li+-Accommodating Covalent Organic Frameworks as Ultralong Cyclable High-Capacity Li-Ion Battery Electrodes, Adv. Function. Mater., 2021, 2108798.
5. Wutao Wei, Weihua Chen, Liwei Mi*, Jiaqiang Xu, and Jiujun Zhang*, High-rate performance aqueous-based supercapacitors at -30 oC driven by novel 1D Ni(OH)2 nanorods and a two-solute electrolyte, J. Mater. Chem. A, 2021, 9, 23860-23872.
6. Jing Liu, Diandian Han, Pengjing Chen, Lipeng Zhai, Yanjie Wang, Weihua Chen, Liwei Mi*, and Liping Yang*, Positive roles of Br in g-C3N4/PTCDI-Br heterojunction for photocatalytic degrading chlorophenols, Chem. Eng. J., 2021, 418, 129492.
7. Yingying Zhang, Jiarui Wu, Siwen Cui, Wutao Wei, Weihua Chen, Rui Pang,* Zijie Wu and Liwei Mi*, Organosulfonate Counteranions-A Trapped Coordination Polymer as a High‐Output Triboelectric Nanogenerator Material for Self‐Powered Anticorrosion, Chem.-Eur. J., 2020, 26, 584-591. Frontispiece.
8. Wutao Wei, Wanyu Ye, Jing Wang, Chao Huang, Jia-Bin Xiong, Huijie Qiao, Shizhong Cui, Weihua Chen,* Liwei Mi* and Pengfei Yan*, Hydrangea-like α-Ni1/3Co2/3(OH)2 Reinforced by Ethyl Carbamate “Rivet” for All-Solid-State Supercapacitors with Outstanding Comprehensive Performance, ACS Appl. Mater. Interfaces, 2019, 11, 32269-32281.
9. Wutao Wei, Jiarui Wu, Shizhong Cui, Yaomin Zhao, Weihua Chen* and Liwei Mi*, α-Ni(OH)2/NiS1.97 heterojunction composites with excellent ion and electron transport properties for advanced supercapacitors, Nanoscale, 2019, 11, 6243-6253. Nanoscale Most Popular Articles. ESI高被引论文。
10. Weihua Chen,* Lupeng Zhang, Chuntai Liu, Xiangming Feng, Jianmin Zhang, Linquan Guan, Liwei Mi* and Shizhong Cui, Electrospun Flexible Cellulose Acetate-Based Separators for Sodium-Ion Batteries with Ultralong Cycle Stability and Excellent Wettability: The Role of Interface Chemical Groups, ACS Appl. Mater. Interfaces, 2018, 10, 28, 23883-23890.
11. Wutao Wei, Shizhong Cui, Luoyi Ding, Liwei Mi,* Weihua Chen* and Xianluo Hu*, Urchin-Like Ni1/3Co2/3(CO3)1/2(OH)·0.11H2O for Ultrahigh-Rate Electrochemical Supercapacitors: Structural Evolution from Solid to Hollow, ACS Appl. Mater. Interfaces, 2017, 9, 40655-40670.
12. Wutao Wei, Weihua Chen,* Luoyi Ding, Shizhong Cui and Liwei Mi*, Construction of hierarchical three-dimensional interspersed flower-like nickel hydroxide for asymmetric supercapacitors, Nano Res., 2017, 10, 3726–3742.
13. Weihua Chen,* Shihan Qi, Linquan Guan, Chuntai Liu, Shizhong Cui, Changyu Shen and Liwei Mi*, Pyrite FeS2 microspheres anchoring on reduced graphene oxide aerogel as an enhanced electrode material for sodium-ion batteries, J. Mater. Chem. A, 2017, 5, 5332-5341.
14. Nannan Wang, Yanjie Wang, Shizhong Cui, Hongwei Hou, Liwei Mi* and Weihua Chen*, A Hollow Tube‐on‐Tube Architecture of Carbon‐Tube‐Supported Nickel Cobalt Sulfide Nanotubes for Advanced Supercapacitors, ChemNanoMat, 2017, 3, 269-276.
15. Liwei Mi,* Wutao Wei, Shaobo Huang, Shizhong Cui, Wangxi Zhang, Hongwei Hou and Weihua Chen*, A nest-like Ni@Ni1.4Co1.6S2 electrode for flexible high-performance rolling supercapacitor device design, J. Mater. Chem. A, 2015, 3, 20973-20982.
16. Yang Gao, Liwei Mi,* Wutao Wei, Shizhong Cui, Zhi Zheng, Hongwei Hou and Weihua Chen*, Double Metal Ions Synergistic Effect in Hierarchical Multiple Sulfide Microflowers for Enhanced Supercapacitor Performance, ACS Appl. Mater. Interfaces, 2015, 7, 4311-4319.
17. Wutao Wei, Liwei Mi,* Shizhong Cui, Bin Wang and Weihua Chen*, Carambola-like Ni@Ni1.5Co1.5S2 for Use in High-Performance Supercapacitor Devices Design, ACS Sustainable Chem. Eng., 2015, 3, 2777-2785.
18. Wutao Wei, Liwei Mi,* Yang Gao, Zhi Zheng, Weihua Chen* and Xinxin Guan*, Partial Ion-Exchange of Nickel-Sulfide-Derived Electrodes for High Performance Supercapacitors, Chem. Mater., 2014, 26, 3418-3426. ESI高被引论文。
19. Liwei Mi,* Wutao Wei, Zhi Zheng, Guangshan Zhu, Hongwei Hou, Weihua Chen* and Xinxin Guan*, Ag+ insertion into 3D hierarchical rose-like Cu1.8Se nanocrystals with tunable band gap and morphology genetic, Nanoscale, 2014, 6, 1124-1133.
20. Liwei Mi,* Wutao Wei, Zhi Zheng, Yang Gao, Yang Liu, Weihua Chen* and Xinxin Guan*, Tunable properties induced by ion exchange in multilayer intertwined CuS microflowers with hierarchal structures, Nanoscale, 2013,5, 6589-6598. HOT Article.