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李永成 讲师

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李永成

职称:讲师,硕士生导师,

青海省“昆仑英才·高端创新创业人才”

邮箱:bcctlyc@126.com

研究方向:第一性原理计算、电催化反应、燃料电池、储氢材料、形状记忆合金;



教育状况

2017.09-2020.12    北京航空航天大学材料科学与工程学院  工学博士

2013.09-2016.06     首都师范大学物理系  工学硕士

2009.09-2013.06    青海/首都师范大学物理系联培  理学学士


从业经历

2021.03-至今  青海大学教师


详细介绍

1.     论文情况

        发表论文18篇,累计影响因子超过200,代表性论文:

[1]  Gao S, Zhang S, Hu R. M., Heng Z. H., Shi X. C., Jin P. P, Li Y. C.* and Shui J. L.,First-

       principles study of the hydrogen storage on rear earth doped Mg2Ni (010) surface,

       advanced materials interface, 2022, Applied surface science, 2023, 614, 156243.

[2]  Xiaochuan Shi , Yongcheng Li*, Shan Zhang, Riming Hu, Shuang Gao, Peipeng Jin, 

       Jiaxiang Shang and Jianglan Shui, Precious trimetallic single-cluster catalysts for oxygen 

       and hydrogen electrocatalytic reactions: theoretical considerations, Nano research, 2023, 

       16, 8042–8050.

[3]   Y.C. Li, X. Liu, L. et al., Preparation of Fe-N-C Catalysts with FeNx (x=1, 3, 4) Active Sites 

        and Comparison of Their Activities for Oxygen Reduction Reaction and Performances in 

        Proton Exchange Membrane Fuel Cell, Journal of Materials Chemistry A, 7 (2019) 

        26147-26153. (Hot paper)

[4]   Li Y C, Wang F H, Shang J X. Ab initio study of oxygen adsorption on the NiTi(110) 

        surface and the surface phase diagram, Corrosion Science, 2016, 106:137-146.

[5]   Y.C Li, RM Hu et al., Effect of Zn atom in Fe and N co-doped graphene for 

        electrocatalysts reactions, Nano Research, 2020, 14, 611–619.

[6]   Y.C Li, R.M. Hu, et al., Density functional theory calculation of Zn and N co-doped 

        graphene for oxygen reduction and evolution reactions, Advanced Theory and 

        Simulations, 2020, 3,2000054.

[7]   L. Xue, Y.C. Li, et al., Zigzag carbon as efficient and stable oxygen reduction 

        electrocatalyst for proton exchange membrane fuel cells, Nature Communications

        2018, 9, 3819.

[8]   X. Wan, X. Liu, Y.C. Li, et al., Fe–N–C electrocatalyst with dense active sites and efficient 

        mass transport for high-performance proton exchange membrane fuel cells, Nature 

        Catalysis, 2 (2019) 259-268

[9]   Q.T. Liu, Y.C. Li, et al., Sequential Synthesis and Active-Site Coordination Principle of 

        Precious Metal Single-Atom Catalysts for Oxygen Reduction Reaction and PEM Fuel 

        Cells, Advanced Energy Materials, 2018, 8, 1701345.

[10] X.B. Xie, Y.C. Li, et al., Catalytic Effects of Decorating AlV3 Nanocatalyst on Hydrogen 

        Storage Performance of Mg@Mg17Al12 Nanocomposite: Experimental and Theoretical 

        Study, ACS Sustainable Chemistry & Engineering, 2020, 8, 12, 4920-4930

2.     参与的代表性科研项目

[1]    青海省科技厅青年基金项目,2024-ZJ-985,氢燃料电池阴极碳基少原子团簇催化剂料备和研究,获批,

          主持;

[2]    青海大学中青年科研基金项目,2022-QGY-2,MOF 基少原子团簇催化剂氧还原性能的实验和理论研究,

          获批,主持;

[3]    国家科学自然基金面上项目,纳米管状Fe-N-C催化剂的制备及薄壁管结构提高FeN4位点利用率

        燃料电池性能的相关机制研究,21975010,2020-01至2023-12,进行中,参与;

3.     学术会议

[1]   2016年中国材料大会,NiTi合金表面稳定性的第一性原理研究,会议摘要&Poster

[2]   2016年中国材料大会,氧在NiTi(110)表面吸附的第一性原理研究,会议摘要&Poster

[3]   The 9th Global Conference on Materials Science and Engineering (CMSE2020) On line 

        conference, Effect of Zn atom in Fe-N-C catalysts for electro-catalytic reactions: 

        theoretical considerations, Oral Speech.