王建军

发布时间:2024-06-04点击:

  名:王建军

  箱:jjwang@zut.edu.cn

 

研究方向:电子摩擦、材料设计

 

个人简介:博士、教授、硕士生导师,中原工学院物理与光电工程学院学术副院长。受国家留学基金委资助,先后在意大利国际理论物理中心、德国亥姆霍兹联合会于利希研究中心进行合作研究。主要从事材料设计、电子摩擦方面的研究工作。主持完成国家自然科学基金2项,参与完成国家自然科学基金4项,主持完成河南省自然科学基金面上项目等省、厅项目4项。先后在包括J. Mech. Phys. SolidsTribology InternationalPhys. Rev. B等在内的国际专业学术期刊上发表论文近40篇,出版专著1部。现为Phys. Rev. BTribology Letters、等期刊的审稿人。先后获得河南省教育厅学术技术带头人、河南省青年骨干教师、中原工学院青年拔尖人才等荣誉称号。

代表性成果:

1. 主持的科研项目

1)国家自然科学基金委-河南联合基金,新型二维异质结构材料纳米摩擦性质及其调控的研究,基金批准号:U16041312017.01-2019.1245万元,主持。

2)国家自然科学基金理论物理专款,电场和表面修饰对石墨烯系统纳米摩擦性质调制的理论研究,基金批准号:114471552015.01-2015.125万元,主持。

3)河南省自然科学基金-面上项目,纳米摩擦的边缘效应及其机制的多尺度研究,项目批准号:2323004212192023.01-2014.1210万元,主持。

4)河南省青年骨干教师资助项目:二维异质界面纳米摩擦性质及其调控研究,2018.1.1-2020.12.313万元,主持。

5)河南省基础与前沿技术研究计划项目,电场杂质耦合效应对碳基薄膜纳米摩擦调制的理论研究,项目批准号:1423004102502014.01-2015.12,主持。

6)河南省教育厅科学技术研究重点项目,石墨烯纳米摩擦性质的调控,项目批准号:14A1400252万元,2014.01-2015.12,主持。

2. 代表性论著

1.  Jianjun Wang, et al., Theoretical study of superlow friction between two single-side hydrogenated graphene sheets, Tribology Letters, 2012, 48 (2): 255-261.

2.  Jianjun Wang, et al., First-principles study of nanoscale friction between graphenes, Acta Physica Sinica, 2012, 10: 337-343.

3.  Jianjun Wang, et al., Comparative study of friction properties for hydrogen- and fluorine-modified diamond surfaces: A first-principles investigation, Surface Science, 2013, 608 (2): 74-79.

4.  Jianjun Wang, et al., Charge distribution view: large difference in friction performance between graphene and hydrogenated graphene systems, Tribology Letters, 2014, 55(3): 405-412.

5.  Jianjun Wang, et al., An atomic scale study of ultralow friction between phosphorus-doped nanocrystalline diamond films, Tribology International, 2015, 86: 85-90.

6.  Jianjun Wang, et al., Tuning the nanofriction between two graphene layers by external electric fields: A density functional theory study, Tribology Letters, 2016, 61(1): 4-9.

7.        Jianjun Wang, et al., The flexible lubrication performance of graphene used in diamond interface as a solid lubricant: First-principles calculations. Nanomaterials, 2019, 9(12), 1784.

8.        Jianjun Wang, et al., Sphere and cylinder contact mechanics during slip. Journal of the Mechanics and Physics of Solids, 143,104094, 2020.

9.        Jianjun Wang, et al., Role of lattice trapping for sliding friction, Europhysics Letters, 2020, 131, 24006.

10.    Jianjun Wang, et al., Cylinder-flat-surface contact mechanics during sliding, Physics Review E, 2020, 102, 043002.

11.    A. Tiwari, Jianjun Wang, Adhesion paradox: Why adhesion is usually not observed for macroscopic solids, Physics Review E, 2020, 102, 042803.

12.    Jianjun Wang, et al., Dependency of sliding friction for two-dimensional systems on electronegativity [J]. Physical Review B, 2022, 105, 165431.

13.    Jianjun Wang, et al., First-principles study on the nanofriction properties of diamane: The thinnest diamond film, Nanomaterials, 2022, 12, 2939.

14.    W.T. Yang, Jianjun Wang*. Enhanced gas molecules adsorption on γ-graphyne doped with Fe atom: A first- principles study [J]. Applied Surface Science, 2022, 601,154083.

15.    二维结构纳米摩擦及调控的理论计算,郑州大学出版社,22.9万字,王建军著,20228月。

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