李晓伟,男,1982年生,江苏徐州人,中共党员,中国矿业大学材料与物理学院教授,江苏特聘教授,博士生/硕士生导师,摩擦学与可靠性工程研究所所长、院金属材料研究中心主任。
长期从事表面改性碳基功能涂层材料的设计、制备和功能特性研究,并探索其在机械、能源、汽车、海洋、纺织、刀模具、生物医学等关键部件的工程化应用。至今已在Friction、Corrosion Science、npj Comput. Mater.、Carbon、ACS Appl. Mater. Interfaces、J. Phys. Chem. C、Appl. Surf. Sci.等国内外期刊上发表论文118篇;授权专利17项;作为编委主要成员之一参与撰写《材料科学与制造技术》专著第五章“类金刚石碳膜材料及其应用”;参与撰写国家标准“碳基薄膜 分类及命名”1项;作为客座编辑在SCI期刊“Materials”(JCR一区)承办“Friction, corrosion and Protection of Material surfaces”特刊;组织和受邀参加2023东部地区摩擦学学术论坛、中国材料热处理与表面工程学术会议、2023“材料与未来”系列论坛之海洋新材料国内青年论坛、第十五届全国摩擦学大会、第十四届全国表面工程大会、第十六届全国物理力学学术会议、AEPSE、E-MRS、ICMCTF-SVC、ACCMS等国内外学术研讨会38次;作为负责人承担国家自然科学基金面上和青年基金(3项)、科技部国际合作、宁波市国际合作、韩国国家研究基金会KRF项目、企业合作项目等18项;作为项目骨干参与国家重点研发计划、科技部973子课题、国家自然科学基金、江苏省双创团队项目、浙江省重大科技招标以及企业委托等项目14项,并荣获宁波市科学技术进步一等奖、中国产学研合作创新成果优秀奖、第二届宁波市高价值专利发明金奖各1项。入选江苏省“特聘教授”、江苏省双创团队核心成员、校高端人才“攀登学者”、韩国KRF fellow、中科院春蕾人才、南太湖精英计划领军创业团队等人才计划;担任教育部学位中心评审专家,国家自然科学基金委和科技部项目函评和会评专家,国家公派出国留学项目评审专家,江苏省、浙江省、广东省、安徽省、河南省、上海等省市的基金评审及咨询专家库成员等;SCI期刊“Progress in Natural Science: Materials International”(IF=4.269)青年编委,SCI期刊“Materials”(IF=3.623)主题编辑,“摩擦学学报(中英文)”期刊编委、“材料保护”期刊编委,“机械工程导报”期刊编委;中国机械工程学会高级会员,中国机械工程学会摩擦学分会委员,中国生物材料学会高级会员,江苏省机械工程学会特聘专家、江苏省机械工程学会摩擦学分会委员、江苏省材料学会青年工作委员会委员,ICMSCE 2021技术委员会成员;Corrosion Science、Carbon、ACS Appl. Mater. Interfaces、Langmuir、Tribol. Int.、Appl. Surf. Sci.等表面工程领域多个期刊审稿专家。
研究方向
机械摩擦学与表面技术
金属材料使役行为与表面工程
表面强化碳基功能材料的设计、制备及机械、能源、汽车、海洋等应用探索
材料表面强化等离子体改性
生物与仿生材料
教育工作经历
2002.09
2006.06:江苏科技大学,材料科学与工程学院,金属材料工程专业,工学学士。
2006.09
2009.04:江苏科技大学,材料科学与工程学院,材料学专业(腐蚀与防护方向),工学硕士学位。
2009.09
2013.01:中科院宁波材料技术与工程研究所,表面工程事业部,材料物理与化学专业,工学博士学位。
2011.01
2013.01:韩国科学技术研究院,计算科学研究中心,博士课题联合培养(国家公派留学)。
2013.02—2015.01:中国科学院宁波材料技术与工程研究所,表面工程事业部,助理研究员。
2013.02—2015.07:中国科学院宁波材料技术与工程研究所,表面工程事业部,博士后,合作导师:陈建敏研究员、汪爱英研究员。
2015.02—2018.02:中国科学院宁波材料技术与工程研究所,表面工程事业部,副研究员,硕士生导师。
2016.06—2019.05:宁波大学,材料科学与化学工程学院,兼职硕士生导师。
2017.08:韩国科学技术研究院,计算科学研究中心,访问学者。
2017.08—2020.10:韩国科学技术研究院,计算科学研究中心,KRF研究员(项目博士后)。
2018.04—2022.04:中国科学院宁波材料技术与工程研究所,表面工程事业部,客聘副研究员。
2020.11—至今:中国矿业大学,材料与物理学院,教授,博士生/硕士生导师,摩擦学与可靠性工程研究所所长、院金属材料研究中心主任。
2023.08—至今:中国科学院宁波材料技术与工程研究所,客聘研究员。
主持承担的科研项目
企业合作,C/C复合材料氧化评价,2024/6-2026/6,在研,主持。
科技部高端外国专家引进计划项目,钛合金表面强化类金刚石涂层的复合结构调控与生物摩擦机理,2023/1-2024/12,在研,主持。
中国矿业大学越崎引智计划,钛合金表面强化类金刚石涂层的复合结构调控与生物摩擦机理2023/1-2025/12,在研,主持。
中国矿业大学材料科学与工程学科引导课题,表面强化类金刚石涂层的结构调控及磨蚀行为,2022/9-2025/8,在研,主持。
国家自然科学基金面上项目,类金刚石薄膜的表面石墨化/钝化结构调控及多环境摩擦润滑机理,2022/1-2025/12,在研,主持。
江苏省特聘教授人才项目,金属表面功能改性碳基薄膜,2021/10-2024/10,在研,主持。
徐州市基础研究计划项目,海工装备用强韧一体化碳基涂层与磨蚀机理,2021/9-2023/8,已结题,主持。
国家自然科学基金面上项目,Ti/Al共掺杂类金刚石薄膜的表/界面结构设计与固液复合润滑机理,2018/1-2021/12,已结题,主持。
韩国国家研究基金会KRF 项目,Study on solid-liquid composite lubrication mechanism of diamond-like carbon coatings by multiscale simulation approach for automobile application,2017/8-2020/10,已结题,主持。
中科院宁波材料所“一三五”重点部署项目子课题,海洋防护抗磨蚀涂层材料高通量设计制备关键技术,2017/3-2018/12,已结题,主持。
科技部国际合作司,中-韩青年科学家交流计划,2016/8-2017/8,已结题,主持。
国家自然科学基金青年项目,多元金属掺杂类金刚石薄膜设计制备与应力降低协同机制,2015/1-2017/12,已结题,主持。
宁波市自然科学基金,Ti/Al共掺杂类金刚石薄膜的可控制备及其性能研究,2014/1-2015/12,已结题,主持。
代表性论著( * 通讯作者)
Xubing Wei*, Zan Chen, Haiyan Feng, Zhengyu Liu, Shiqi Lu, Jiaqing Ding, Naizhou Du, Pingmei Yin, Weibo Yang, Xiaowei Li*, Guangan Zhang*. Understanding the tribo-corrosion behaviors and mechanism of Si/N-DLC films in marine environment. Diam. Relat. Mater., 2024, 150: 111756.
Xubing Wei, Shiqi Lu, Jiaqing Ding, Shihao Zheng, Zan Chen, Junjie Lu, Zhengyu Liu, Pingmei Yin, Naizhou Du, Weibo Yang, Haiyan Feng, Guangan Zhang, Xiaowei Li*. Enhanced corrosion resistance of a novel periodic multilayered Si/(Si, N)-DLC coating against simulated coal mine water. Ceram. Int.,2024, 50(23): 49385-49399.
Jianwei Qi*, Kai Chen, Shuhua Teng, Xiaowei Li*. Preparation and characterisation of gradient HA/TiN/Ti coatings for biomedical applications. Surf. Eng., 2024, 40(6): 826-837.
Xubing Wei, Naizhou Du, Peng Guo, Rende Chen, Jie Wu, Lei Wang, Kwang-Ryeol Lee, Xiaowei Li*, Haibin He*. Friction dependence on processing priority for graphitization/passivation coupled amorphous carbon films. Carbon, 2024, 230: 119631.
Zan Chen, Xubing Wei, Shiqi Lu, Jiaqing Ding, Naizhou Du, Cunao Feng, Kai Chen, Peng Guo, Kwang-Ryeol Lee, Guangan Zhang, Xiaowei Li*. Surface in-situ graphitization and properties of amorphous carbon film induced by laser irradiation. Friction, 2024, https://doi.org/10.26599/FRICT.2025.9440977.
Jiaqing Ding, Shiqi Lu, Zan Chen, Xubing Wei, Haolin Zhang, Peng Guo, Cunao Feng, Kai Chen, Kwang-Ryeol Lee, Xiaowei Li*. Synergistic lubrication of diamond-like carbon and poly-α-olefin oil: Coupled dependence on oil viscosity and applied load. Ceram. Int.,2024, 50(21): 42846-42855.
Shiqi Lu, Jiaqing Ding, Xubing Wei*, Kwang-Ryeol Lee, Zan Chen, Wei Yang, Jianghao Qiao, Kai Chen, Dekun Zhang, Wei Zhang*, Xiaowei Li*. Structural modulation and frictional, antibacterial and biocompatible properties of Ag-incorporated DLC films: Dependence on Ag precipitation behavior. Appl. Surf. Sci., 2024, 677: 161078.
Yanping Liu, Zan Chen, Naizhou Du, Xubing Wei , Jianwei Qi, Kwang-Ryeol Lee, Xiaowei Li*. Atomic-scale understanding on the influence of sliding angle on the interfacial structure and friction behavior of textured amorphous carbon films. Diam. Relat. Mater., 2024, 147: 111359.
Xubing Wei*, Haiyan Feng, Zhengyu Liu, Zan Chen, Pingmei Yin, Shiqi Lu, Jiaqing Ding, Naizhou Du, Xiaowei Li*, Guangan Zhang*. Insight into the corrosion behaviors and mechanism of the self-healing Si/N-DLC films in oilfield environment. Corros. Sci., 2024, 231: 111989.
Naizhou Du, Xubing Wei, Xiaowei Li*, Zan Chen, Shiqi Lu, Jiaqing Ding, Cunao Feng, Kai Chen, Jianghao Qiao, Dekun Zhang, Kwang-Ryeol Lee, Tiancai Zhang. Friction reactions induced by selective hydrogenation of textured surface under lubricant conditions. Friction, 2024, 12(1): 174-184.
Jiaqing Ding, Naizhou Du, Xubing Wei, Xiaowei Li*, Zan Chen, Shiqi Lu, Haolin Zhang, Cunao Feng, Kai Chen, Jianghao Qiao, Dekun Zhang, Kwang-Ryeol Lee*. Insights into friction behavior of textured amorphous carbon and lubricant composite system: dependence on the lubricant viscosity and textured shape. Prog. Nat. Sci. Mater. Int., 2023, 33(5): 616-624.
Naizhou Du, Xiaowei Li*, Xubing Wei, Zan Chen, Shiqi Lu, Jiaqing Ding, Cunao Feng, Kai Chen, Jianghao Qiao, Dekun Zhang, Kwang-Ryeol Lee. Atomistic Insights into Interfacial Optimization Mechanism for Achieving Ultralow-Friction Amorphous Carbon Films Under Solid–Liquid Composite Conditions. ACS Appl. Mater. Interfaces, 2023, 15(45): 53122-53135.
Shiqi Lu, Naizhou Du, Xiaowei Li*, Xubing Wei, Zan Chen, Jiaqing Ding, Cunao Feng, Kai Chen, Jianghao Qiao, Dekun Zhang, Wei Zhang*. Exploring the role of surface hydrogenation in anti-friction of circular-textured amorphous carbon film from the atomic level and its dependence on textured shape. Surf. Interfaces, 2023, 43: 103528.
Cunao Feng, Zhenyu Wang, Zhaolei Li, Xiaowei Li*. Special Issue: Friction, Corrosion and Protection of Material Surfaces. Materials, 2023, 16(18): 6220.
Zan Chen, Naizhou Du, Xiaowei Li*, Xubing Wei, Jiaqing Ding, Shiqi Lu, Shuangjiang Du, Cunao Feng, Kai Chen, Dekun Zhang, Kwang-Ryeol Lee*. Atomic-Scale Understanding on the Tribological Behavior of Amorphous Carbon Films under Different Contact Pressures and Surface Textured Shapes. Materials, 2023, 16(18): 6108. Xiaowei Li*, Naizhou Du, Cunao Feng, Kai Chen, Xubing Wei, Dekun Zhang, Kwang-Ryeol Lee*. Theoretical superlubricity and its friction stability of amorphous carbon film induced by simple surface graphitization. Appl. Surf. Sci., 2023, 615: 156318-1-11.
Naizhou Du, Xubing Wei, Xiaowei Li*, Zan Chen, Shiqi Lu, Jiaqing Ding, Cunao Feng, Kai Chen, Jianghao Qiao, Dekun Zhang, Kwang-Ryeol Lee. Unraveling the friction response from selective hydrogenation of textured amorphous carbon surface. Appl. Surf. Sci., 2023, 614: 156246-1-9.
Xiaowei Li*, Xiaowei Xu, Jianwei Qi, Dekun Zhang, Aiying Wang*, Kwang-Ryeol Lee*. Insights into Superlow Friction and Instability of Hydrogenated Amorphous Carbon/Fluid Nanocomposite Interface. ACS Appl. Mater. Interfaces, 2021, 13(29):35173-35186.
Xiaowei Li*, Dekun Zhang, Kwang-Ryeol Lee*. Exploring the different roles of graphene and its derivatives as nano-additives at amorphous carbon surface through reactive molecular dynamics approach. Comput. Mater. Sci., 2021, 195:110499-1-110499-10.
Xiaowei Xu, Peng Guo, Xiaowei Li*, Kwang-Ryeol Lee, Ping Cui, Aiying Wang*. Exploring the tribological behavior of Ti/Al-DLC/PAO/graphene oxide nanocomposite system. Ceram. Int.,2021, 47(8):11052-11062.
Xiaowei Li*, Dekun Zhang*, Xiaowei Xu, Kwang-Ryeol Lee*. Tailoring the Nanostructure of Graphene as an Oil-Based Additive: toward Synergistic Lubrication with an Amorphous Carbon Film. ACS Appl. Mater. Interfaces, 2020, 12:43320-43330.
Xiaowei Xu, Peng Guo, Xiao Zuo, Lili Sun, Xiaowei Li*, Kwang-Ryeol Lee, Aiying Wang*. Understanding the effect of Al/Ti ratio on the tribocorrosion performance of Al/Ti co-doped diamond-like carbon films for marine applications. Surf. Coat. Technol., 2020, 402:126347-1-9.
Xiaowei Li*, Aiying Wang*, Kwang-Ryeol Lee*. Fundamental understanding on low-friction mechanisms at amorphous carbon interface from reactive molecular dynamics simulation. Carbon, 2020, 170:621-629.
Xiaowei Li*, Hanchao Li, Kwang-Ryeol Lee, Aiying Wang*. Cooling rate dependence of Ni-catalyzed transformation of amorphous carbon into graphene in rapid thermal processing: an experimental and reactive molecular dynamics study. Appl. Surf. Sci., 2020, 529:147042-1-8.
Xiaowei Xu, Peng Guo, Leslie Ching Ow Tiong, Xiao Zuo, Xiaowei Li*, Kwang-Ryeol Lee, Ping Cui, Peiling Ke, Aiying Wang*. Role of dimple textured surface on tribological properties of Ti/Al-codoped diamond-like carbon films. Thin Solid Films, 2020, 708:138136-1-11.
Xiaowei Xu#, Yong Zhou#, Linlin Liu, Peng Guo, Xiaowei Li*, Kwang-Ryeol Lee, Ping Cui, Aiying Wang*. Corrosion behavior of diamond-like carbon film induced by Al/Ti co-doping. Appl. Surf. Sci., 2020, 509:144877-1-10.
Xiaowei Li*, Zhenyu Wang, Hanchao Li, Aiying Wang*, Kwang-Ryeol Lee*. Fast Synthesis of Graphene with a Desired Structure via Ni-Catalyzed Transformation of Amorphous Carbon during Rapid Thermal Processing: Insights from Molecular Dynamics and Experimental Study. J. Phys. Chem. C, 2019, 123:27834-27842. (Front cover)
Xiaowei Li*, Hiroshi Mizuseki, Sung Jin Pai, Kwang-Ryeol Lee*. Reactive molecular dynamics simulation of the amorphous carbon growth: Effect of the carbon triple bonds. Comput. Mater. Sci., 2019, 169:109143-1-11.
Xiaowei Li*, Xiaowei Xu, Yong Zhou, Kwang-Ryeol Lee*, Aiying Wang*. Insights into friction dependence of carbon nanoparticles as oil-based lubricant additive at amorphous carbon interface. Carbon, 2019, 150:465-474.
Xiaowei Li*, Aiying Wang, Kwang-Ryeol Lee*. Atomistic understanding on friction behavior of amorphous carbon films induced by surface hydrogenated modification. Tribol. Int., 2019, 136:446-454.
Xiaowei Li*, Yong Zhou, Xiaowei Xu, Aiying Wang, Kwang-Ryeol Lee*. Role of the carbon source in the transformation of amorphous carbon to graphene during rapid thermal processing. Phys. Chem. Chem. Phys., 2019, 21:9384-9390.
Xiaowei Li*, Aiying Wang, Kwang-Ryeol Lee*. Role of unsaturated hydrocarbon lubricant on the friction behavior of amorphous carbon films from reactive molecular dynamics study. Comput. Mater. Sci., 2019, 161:1-9.
Yong Zhou, Peng Guo, Lili Sun, Linlin Liu, Xiaowei Xu, Wenxian Li, Xiaowei Li*, Kwang-Ryeol Lee, Aiying Wang*. Microstructure and property evolution of diamond-like carbon films co-doped by Al and Ti with different ratios. Surf. Coat. Technol., 2019, 361:83-90.
Xiaowei Li*, Aiying Wang, Kwang-Ryeol Lee*. Tribo-Induced Structural Transformation and Lubricant Dissociation at Amorphous Carbon/Alpha Olefin Interface. Adv. Theory Simul., 2019, 2:1800157-1-10. (Back cover)
Xiaowei Li*, Aiying Wang, Kwang-Ryeol Lee*. Insights on low-friction mechanism of amorphous carbon films from reactive molecular dynamics study. Tribol. Int., 2019, 131:567-578.
Xiaowei Li*, Aiying Wang, Kwang-Ryeol Lee*. Transformation of amorphous carbon to graphene on low-index Ni surfaces during rapid thermal processing: a reactive molecular dynamics study. Phys. Chem. Chem. Phys., 2019, 21:2271-2275. (Back cover)
Xiaowei Li*, Aiying Wang, Kwang-Ryeol Lee*. Mechanism of contact pressure-induced friction at the amorphous carbon/alpha olefin interface. npj Comput. Mater., 2018, 4:53-1-9.
Xiaowei Li, Aiying Wang, Kwang-Ryeol Lee*. Comparison of empirical potentials for calculating structural properties of amorphous carbon films by molecular dynamics simulation. Comput. Mater. Sci., 2018, 151:246-254.
Cuicui Kong, Peng Guo, Lili Sun, Yong Zhou, Yunxiao Liang, Xiaowei Li*, Peiling Ke, Kwang-Ryeol Lee, Aiying Wang*. Tribological mechanism of diamond-like carbon films induced by Ti/Al co-doping. Surf. Coat. Technol., 2018, 342:167-177.
Xiaowei Li*, Lei Li, Dong Zhang, Aiying Wang*. Ab Initio Study of Interfacial Structure Transformation of Amorphous Carbon Catalyzed by Ti, Cr, and W Transition Layers. ACS Appl. Mater. Interfaces, 2017, 9:41115-41119.
Peng Guo#, Xiaowei Li#, Lili Sun, Rende Chen, Peiling Ke, Aiying Wang*. Stress reduction mechanism of diamond-like carbon films incorporated with different Cu contents. Thin Solid Films, 2017, 640:45-51.
编委主要成员,编写《材料科学与制造技术》-“第5章 类金刚石碳膜材料及其应用”,页码161-215,科学出版社,2014.10.11,ISBN:9787030421036。
联系方式:
电话:15867273071
邮箱:xwli@cumt.edu.cn
地址:江苏省徐州市大学路1号中国矿业大学南湖校区材料学院楼B508
邮编:221116