个人信息
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受教育经历
2003/09-2006/06,南开大学,化学学院,理学博士;
1998/09–2001/06,中科院长春应化所,稀土化学与物理开放实验室,理学硕士;
1994/09–1998/06,内蒙古师范大学,化学系,理学学士;
研究工作经历
2001/07–2003/08,中科院长春应化所,稀土化学与物理开放实验室,实验员;
2006/07–2008/12,南开大学,化学学院,讲师;
2009/01–至今,南开大学,化学学院,副教授,硕士生导师;
2017.10-2018.10,多伦多大学,化学系,访问学者,合作导师Prof. Geoffery A. Ozin
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg(1) CaiWang; Houan Ren; Zihao Wang; Qingxin Guan; Ran Hao; Yuping Liu*; Wei Li*; A promising single-atom Co-N-C catalyst for efficient CO2electroreduction and high-current solar conversion of CO2 to CO,Applied Catalysis B: Environmental,2022, 304: 12958.
(2) CaiWang; Xin Hu; Xiaosong Hu; Xinyu Liu; Qingxin Guan; Ran Hao; Yuping Liu*; Wei Li*.Typical transitionmetal single-atom catalysts with a metal-pyridine N structure for efficient CO2electroreduction, Applied Catalysis B: Environmental, 2021, 296: 120331.
(3) Xian-WeiLv; Xiao-Lu Liu; Yu-Jun Suo; Yu-Ping Liu; Zhong-Yong Yuan*. Identifying the dominant role of pyridinic-N−Mo bondingin synergistic electrocatalysis for ambient nitrogen reduction, ACS Nano, 2021, 15:12109-12118.
(4) Jin-TaoRen, Lei Chen, Yuping Liu, Zhong-Yong Yuan*. Hollowcobalt phosphate microspheres for sustainable electrochemical ammoniaproduction through rechargeable Zn–N2 batteries, J. Mater. Chem. A, 2021, 9: 11370-11380.
(5) Yi-DaiYing, Jin-Tao Ren, Yu-Ping Liu, Wei Li, Zhong-Yong Yuan*. Facile synthesis of nitrogen, phosphorus and sulfurtri-doped carbon nanosheets as efficient oxygen electrocatalyst forrechargeable Zn-air batteries. MaterialsScience & Engineering B, 2021, 273:115439.
(6) 刘晓璐,耿钰晓,郝然,刘玉萍∗,袁忠勇,李伟.Electrocatalytic nitrogen reduction reaction underambient condition: current status, challenges, and perspectives. Progress in Chemistry, 2021, 33(7):1074-1091.
(7) Xian-WeiLv#; Lu Wang#; Guichang Wang; Ran Hao; Jin-Tao Ren;Xiaolu Liu; Paul N. Duchesne; Yuping Liu*;Wei Li; Zhong-Yong Yuan; Geoffrey A Ozin*; ZIF-supported AuCu nanoalloy for ammonia electrosynthesisfrom nitrogen and thin air, Journal of Materials Chemistry A, 2020, 8(18): 8868-8874.
(8) Cai-CaiZhang#; Xiaolu Liu#; Yu-PingLiu*; Yu Liu*; Two-dimensional supramolecular nanoarchitectures of polypseudorotaxanesbased on cucurbit[8]uril for highly efficient electrochemical nitrogen reduction,Chemistry of Materials, 2020, 32(19):8724-8732.
(9) RanHan; Jin-Tao Ren; Xian-Wei Lv; Wei Lv; Yu-PingLiu*; Zhong-Yong Yuan*; N-doped porous carbon hollow microspheres encapsulatedwith iron-based nanocomposites as advanced bifunctional catalysts forrechargeable Zn-air battery, Journal of Energy Chemistry, 2020, 49: 14-21.
(10) RanHao#; Wenming Sun#; Qian Liu; Xiaolu Liu; Xianwei Lv; WeiLv; Yuping Liu*; ZhuruiShen*; Efficient electrochemical nitrogen fixation over isolatedPt sites, Small,2020, 16: 2000015.
(11) Xian-WeiLv; Zhongpan Hu; Jintao Ren; Yuping Liu*;Zheng Wang; Zhong-Yong Yuan*; Self-supported Al-doped cobalt phosphide nanosheets grownon three-dimensional Ni foam for highly efficient water reduction and oxidation,Inorganic Chemistry Frontiers, 2019,6(1): 74-81.
(12) Xian-WeiLv; Zhong-Pan Hu; Lei Chen; Jin-Tao Ren; Yu-PingLiu*; Zhong-Yong Yuan; Organic-inorganic metal phosphonate-derived nitrogen-dopedcore-shell Ni2P nanoparticles supported on Ni foam for efficient hydrogenevolution reaction at all pH values, ACS Sustainable Chemistry & Engineering,2019, 7(15): 12770-12778.
(13) Xian-WeiLv; Jin-Tao Ren; Yan-Su Wang; Yu-PingLiu*; Zhong-Yong Yuan*; Well-defined phase-controlled cobalt phosphide nanoparticlesencapsulated in nitrogen-doped graphitized carbon shell with enhanced electrocatalyticactivity for hydrogen evolution reaction at all-pH,ACS Sustainable Chemistry &Engineering, 2019, 7(9): 8993-9001.
(14) Xian-WeiLv; Wenwen Tian; Yuping Liu*;Zhong-Yong Yuan*; Well-defined CoP/Ni2P nanohybrids encapsulatedin a nitrogen-doped carbon matrix as advanced multifunctional electrocatalystsfor efficient overall water splitting and zinc-air batteries,Materials Chemistry Frontiers, 2019,3(11): 2428-2436.
(15) JuanWang; Yongchang Liu; Shuyu Wang; Xiaoting Guo; Yuping Liu*; Facile fabrication of pompon-like hierarchical CuO hollowmicrospheres for high-performance lithium-ion batteries,Journal of Materials Chemistry A,2014, 2(5): 1224-1229.
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