贾雯茹
2026-04-27 由:发布 浏览: 阅读次数: 次

贾雯茹,工学博士,讲师。Email:jiawenru@lcu.edu.cn
教育工作经历:
2025.08-至今ok138cn太阳集团材料与工程学院 讲师
2021.09-2025.06 太原理工大学,博士 材料科学与工程专业
2020.08-2021.08 太原理工大学新型碳材料研究院 科研助理
2017.09-2019.06 南京农业大学,硕士 食品工程专业
2012.09-2016.06 ok138cn太阳集团, 学士 食品科学与工程专业
研究方向:
(1)医用金属材料表面改性;
(2)高熵合金薄膜/涂层制备及性能研究;
(3)金刚石薄膜/涂层制备及性能研究;
主讲课程:
本科生课程:《材料性能学实验二(物理性能)》、《新材料与未来技术概论》
教学科研项目:
(1)面向骨植入应用的医用不锈钢表面高熵合金/金刚石仿生复合涂层及其多功能协同增强机制研究,ok138cn太阳集团博士科研启动基金,主持,在研;
(2)电子器件级高质量单晶金刚石的外延生长和掺杂工艺研发,企业委托横向课题,主持,在研;
代表论著:
[1] Wenru Jia; Ke Zheng; Xinglong Han; Jianwei Wang; Yanxia Wu; Jie Gao*; Shengwang Yu*; Yanpeng Gong*; Construction of biomimetic micro-nano composite structured refractory high-entropy alloys/diamond composite modified layer on 316 L stainless steel: a comprehensive study on wear property, corrosion resistance, and biological behavior, Chemical Engineering Journal, 2025, 522: 168024.
[2] Wenru Jia; Yanpeng Gong; Ke Zheng; Yong Ma; Xin Zheng; Yanxia Wu; Bing Zhou; Jie Gao*; Shengwang Yu*; Mechanical properties and biological behavior of refractory TiZrNbTa medium-entropyand TiZrHfNbTa high-entropy alloy nanofilms on AISI 316L for bone implants, Materials Characterization, 2024, 216: 114253.
[3] Wenru Jia; Yanpeng Gong; Ke Zheng; Yong Ma; Jiaqi Zhi; Xin Zheng; Bing Zhou; YongshengWang; Jie Gao*; Shengwang Yu*; Microstructure evolution, mechanical and abrasive wear properties of NiCrSiB-SiC composite coatings prepared on 16Mn low-carbon steel by Ni-based alloy catalyzed SiC decomposition, Surface and Coatings Technology, 2023, 473: 130022.
[4] Jianwei Wang; Hongjun Hei; Yongsheng Wang*; Wenru Jia*; Yanpeng Gong; Xinglong Han; Shengwang Yu*; Low-temperature deposition of CVD diamond films on HfNbTaMo medium entropy alloy:Morphology, process and wear properties, Journal of Alloys and Compounds, 2025, 1035: 181562.
[5] Xinglong Han; Yongsheng Wang*; Yanpeng Gong; Wenru Jia*; Jianwei Wang; Xiaoqin Yang; Shengwang Yu*; Coexisting multi-valence states of doped Ta into β-Ga2O3 films on B-doped monodiamond to achieve high performance heterojunction detector, Materials Today Physics, 2025,52: 101682.