头像
论文目录

通讯地址:

个人邮箱:

邮政编码:

办公地点:

传真:

  • 个人简介

  • 研究方向

  • 科研团队

  • 科研项目

  • 获奖动态

  • 教学随笔

  • 教育经历

  • 课程教学

  • 论文著作

  • 科研论文

  • 科研横向项目

  • 科研纵向项目

  • 科研专利

  • 科研动物专利

  • (1) H. Lou*Chi Ma, Activating the Pt triangular chain of Janus Pt2C monolayer forms multiple active sites for hydrogen and oxygen evolution reactions, Applied Surface Science, 2025, 712, 164148.

    (2) H. Lou*, Chi Ma, Metallic PtC monolayer as a promising hydrogen evolution electrocatalyst, Physical Chemistry Chemical Physics, 2025, 27, 2749-2757.

    (3) H. Lou, G.C. Yang*, A Metallic La3C2 Monolayer with Remarkable Activity for the Hydrogen Evolution Reaction: A First-principles Study, Journal of Materials Chemistry A, 2023, 11, 6394-6402.

    (4) H. LouUdo Schwingenschlogl, G.C. Yang*, FeC6N monolayer with ideal properties for water splitting, Applied Surface Science, 2023, 626, 157203.

    (5) H. Lou, Chi Ma*, Multifunctional Metallic Anode for Optimizing Organic Light-Emitting Devices Performance, IEEE Transactions on Nanotechnology, 2023, 22, 309-312.

    (6) H. Lou, G.t. Yu*, M. Tang, W. Chen, G.C. Yang*, Janus MoPC Monolayer with Superior Electrocatalytic Performance for Hydrogen Evolution ReactionACS Applied Materials & Interfaces2022, 14, 6, 7836–7844.

    (7) H. Lou, K.W. Qiu, G.C. Yang*, Janus Mo2P3 Monolayer as an Electrocatalyst for Hydrogen EvolutionACS Applied Materials & Interfaces, 2021, 13, 57422–57429.

    (8) H. Lou, W. Chen*, G.t. Yu, G.C. Yang*, A New MoCN Monolayer Containing Stable Cyano Structural Units as High-Efficiency Catalyst for Hydrogen Evolution Reaction, Nanoscale, 2022, 14, 3069-3077.

    (9) H. Lou, T. Yu, G.C. Yang*, et al. Achieving High Hydrogen Evolution Reaction Activity of A Mo2C Monolayer, Physical Chemistry Chemical Physics, 2020, 22, 26189-26199. 

    (10) W.Y. Zhang‡, H. Lou, G.C. Yang*, 2D Metal-Free BSi5 with an Intrinsic Metallicity and Remarkable HER Activity, Journal of Physical Chemistry Letters, 2023, 14, 11036-11042.

    (11) Z.C. Wang‡, H. Lou, Y. Liu, G.C. Yang*, et al. An Antiferromagnetic Semiconducting FeCN2 Monolayer with A Large Magnetic Anisotropy and Strong Magnetic Coupling, Physical Chemistry Chemical Physics, 2023, 25, 21521-21527.

    (12) Z.C. Wang‡, H. Lou, Y. Liu, G.C. Yang*, et al. 2D antiferromagnetic semiconducting FeCN with interesting properties, Physical Chemistry Chemical Physics, 2023, 25, 32416-32420.