
姓名:李婷 职称:副教授
性别:女
出生日期:1987/08
所在专业:机械制造及其自动化
硕士生指导教师:是
博士生指导教师:否
E-mail:liting@sjzu.edu.cn
联系电话:024-24694412
研究方向:
(1) 机械系统智能减摩设计与多尺度协同润滑;
(2) 高性能基础件精密制造工艺与装备;
(3) 多物理场仿真及分子模拟;
(4) 深度学习赋能的智能制造;
***********教育经历及工作经历*********
2005/09~2009/06,武汉大学,学士
2009/09~2014/06,武汉大学,硕博连读,博士
2014/07~2016/08,中国广核集团有限公司,高级工程师
2016/08~至今,沈阳建筑大学,副教授
***********科研项目***********
(1) 国家重点研发计划,2018YFC1801203-05,2018/12-2022/11,73万元,主持;
(2) 辽宁省自然科学基金,2019-ZD-0670,2019/10-2021/9,5万元,主持;
(3) 辽宁省教育厅科研项目,LJZ2017034,2017/11-2019/10,2万元,主持;
(4) 国家重点研发计划,2024YFB3410205,2024/12-2027/11,250万,参与;
(5) 国家重点研发计划,2018YFC1801203,2018/12-2022/11,208万元,参与;
(6) 国家自然青年科学基金,51805336,2019/01-2021/12,23万元,参与;
(7) 辽宁省教育厅, 辽宁省教育厅重点项目, JYTZD2023167, 2023-08 至 2025-08, 5万元,参与;
(8) 辽宁省教育厅重点项目, LJ212410153027, 2024-09 至 2026-08, 8万元,参与;
(9) 辽宁省自然科学基金面上项目,2023-MS-225,2023/03-2025/02,8万元,参与;
(10) 辽宁省教育厅科研项目,JYTZD2023167, 2023/12-2025/11,5万元,参与;
(11) 辽宁省航发材料摩擦学重点实验室开放基金,LKLAMTF202205,2022/01-2022/12,3万元,参与;
(12) 辽宁省重点研发计划,2021JH2/10100003,2021/01-2023/12,20万元,参与;
(13) 辽宁省教育厅科研项目,lnjc201918,2019/10-2021/09,3万元,参与;
(14) 辽宁省自然科学基金指导计划项目,2019-ZD-0687,2019/07-2021/06,5万元,参与;
(15) 辽宁省自然科学基金指导计划项目,20170540740,2018/01-2019/12,5万元,参与;
(16) 辽宁省大型科学仪器设备共享服务项目,LNSDX2018001,2018/03-2019/03,5万元,参与;
(17) 辽宁省教育厅科研项目,LJZ2017005,2017/11-2019/10,10万元,参与;
***********发表论文***********
(1) Ting Li, Yun Chen, Ziyu Han, Junhai Wang, Xinran Li,Lixiu Zhang, Yunwu Yu, DeepEutectic Solvent ModifiedMxene as Nonpolar Lubricant Additives[J], ACS Applied Nano Materials, 2025,10.1021/acsanm.4c06785.
(2) Ting Li, Yun Chen, RuiWang, Junhai Wang, Xinran Li, Lixiu Zhang,Preparation of Graphene and Its Tribological Properties Based on Deep Eutectic SolventStripping Method[J], Tribology Letters, 2024, 72(4): 1-14.
(3) Ting Li, Zhipeng Zhang, Junhai Wang, Tingting Yan, RuiWang, Xinran Li, Lixiu Zhang, Xiaoyi Wei, Lubricatingproperties of thymol-based deep eutectic solvents[J], Industrial Lubrication andTribology, 2024, 76(6): 759-768.
(4) Ting Li, Qianqian Zou,Junhai Wang, Qiang Li, Yumu Zhou, Yulan Tang, Nitrogen and phosphorus co-doped carbon point modified 2D2D (001)TiO2Ti3C2Tx heterostructures for highly efficient photocatalyticdegradation of antibiotics in water[J], New Journal of Chemistry, 2024,48(18):8402-8415.
(5) Ting Li, Junmiao Wu,Junhai Wang, Yunwu Yu, Xinran Li, Xiaoyi Wei, Lixiu Zhang, Preparation and tribological properties of porous polyimide modified bygraphene[J], Industrial Lubrication and Tribology, 2024, 76(4):564-574.
(6) Ting Li, Mengzhou Ma,Junhai Wang, Qiang Li, Yunwu Yu, Qianqian Zou, Xinran Li, Xiaoyi Wei, Tingting Yan, Yulan Tang, Enhanced photocatalytic degradationof antibiotics by AgBiOIg-C3N4 composites[J], Phys. Status Solidi A, 2023, 220(17): 2300261.
(7) Ting Li, Xianggang Chen, Junhai Wang,Lixiu Zhang, Xinran Li and Xiaoyi Wei, Synthesis of ZnFe2O4@MoS2 core-shell nanocomposites withenhanced lubrication performance as lubricant additives[J],Industrial Lubrication and Tribology, 2023, 75(5): 484-496.
(8) Yulan Tang, Xianyuan Sun, Xiankun Zhang, DongruiZhou, Ting Li, Effect of visible light catalyst Ag6Si2O7–TiO2with core-shell nanostructure on performance of poly(vinylidenefluoride)-g-poly (ethylene glycol) methyl ether methacrylate/poly(vinylidenefluoride) high flux ultrafiltration membranes[J], Iranian Polymer Journal,2024, 33, 981-1000.
(9) Yulan Tang, Dongrui Zhou, Xiankun Zhang, Xianyuan Sun,Zesheng Sheng, Ting Li, Laccase–Cu3BTC2 Prepared via aBiomimetic Mineralization Method and Its Effect on the Performance of aPoly(vinylidene fluoride) Membrane (BTC=Benzene-1,3,5-tricarboxylate)[J], ACSApplied Polymer Materials, 2024, 6, 11.
(10) Yulan Tang , Xiaohan Zhang , Hongda Wang , WenlongLi , Diannan Huang , Ting Li, A New Method for Groundwater PollutionInvestigation[J], Water, Air,&Soil Pollution, 2024,235,563.
(10) Junhai Wang, Weipeng Zhuang, Wenfeng Liang, TingtingYan, Ting Li, Lixiu Zhang, Shu Li*, Inorganic nanomaterial lubricant additives for base fluids, to improve tribological performance: Recent developments[J], Friction, 2022, 10(5),645-676.
(12) Guoliang Zhao, JunhaiWang, Yuanyuan Deng, Tingting Yan, Wenfeng Liang, Ting Li, Lixiu Zhang, Qianzhong Jia, Ye Wan, The study of the tribologicalproperties of TiB2/Cr multilayered coatings over awide temperature range[J], Journal of Materials Research & Technology, 2022, 16, 290-301.
(13) Ting Li, Xianggang Chen, Junhai Wang, Lixiu Zhang,Xiaoyi Wei, Libo Zhao, Mengzhou Ma, Research progress of nano lubricatingadditives[J], IOP Conf. Ser.: Earth Environ. Sci., 2021, 680, 012084.
(14) Junhai Wang, Weipeng Zhuang, Tingting Yan, WenfengLiang, Ting Li, Lixiu Zhang, Xiaoyi Wei, Tribologicalperformances of copper perrhenate/graphene nanocomposite as lubricating additive under various temperatures[J], Journal of Industrial& Engineering Chemistry, 2021, 100, 296-309.
(15) Jinxiang Fu, Jianyu Wei, Ting Li, Yulan Tang, YueRen, Qixuan Guo, Application of the original site point method in determining abaseline for two different types of sites in northern China[J], IntegratedEnvironmental Assessment and Management, 2021, 17,1263-1273.
(16) Junhai Wang, WeipengZhuang, Tingting Yan, Wenfeng Liang, Ting Li, Lixiu Zhang, Xiaoyi Wei, Lipei Zhang, Preparation and tribological properties ofcalcium perrhenate as high-performance lubricating additive toward abroad temperature range[J], Journal of Materials Research &Technology, 2020, 9, 6579-6594.
(17) Junhai Wang, Ting Li,Tingting Yan, Xiaoyi Wei, Xin Qu, Shuai Yuan[J], Friction Behavior of Silver Perrhenate in Oil as Lubricating Additive for Use atElevated Temperatures[J], Materials, 2019, 12, 2199.
(18) Junhai Wang, Lixiu Zhang, Ting Li, Ke Zhang, Study on tribologicalproperties of zinc perrhenate in oil‐based hybrid lubricationsystem over a broad temperature range[J], Lubrication Science, 2018, 30,257-268.
(19) Junhai Wang, Ting Li, Tingting Yan, Lixiu Zhang, Ke Zhang, Xin Qu, Role ofMagnesium Perrhenate in an Oil/Solid Mixed System for Tribological Applicationat Various Temperatures[J], Materials, 2018, 11(9), 1754.
(20) Junhai Wang, Bing Lu, Lixiu Zhang, Ting Li, TingtingYan, Mengxu Li, An investigation on the tribological properties of Co(ReO4)2/MoS2composite as potential lubricating additive at various temperatures[J], MaterialsResearch Express, 2018, 5, 026522.