无机非金属材料工程系

李享容 副教授

日期:2023-03-16

【个人简介】

李享容,女,九三学社,博士研究生,副教授,研究生导师,沈阳市高层次人才,教育部学位中心评议专家。从事先进电化学储能技术与新型催化材料在能源和环境中的应用研究。主持国家自然科学基金一项、省科技厅面上项目1项,参与省市级课题多项,发表SCI论文近30篇,合计影响因子>220,申请及授权发明专利10余项,参编著作1部,研究成果多次获得沈阳市自然科学成果奖。

【研究领域及主要项目】

主要研究领域:

1. 先进电化学储能系统的开发及关键材料研究

2. 新型催化材料在能源和环境中的应用

主持科研项目:

1. 2019年主持国家自然科学基金青年基金,“全钒液流电池正负极电解液粘度差异下的对流传质过程与容量失衡分析”(21805290)。

2. 2024年主持辽宁省科技厅联合计划面上项目,“缺陷介导界面化学键构筑实现反应动力学增强及抑制析氢的液流电池电极材料研究”(2024-MSLH-189)。

3. 2020年参与辽宁省面上基金项目,“低成本新型液流电池电化学体系构建与应用研究”(2020-MS-012)。

4. 2017年参与辽宁环境科研教育“123工程”项目,“饮用水中致癌阴离子的去除”(CEPF2014-123-1-4)。

【学术成果】

学术论文

1. J. Xiao, J. Bai, J.T. Yu, C. J. Ji,X.R. Li* (通讯作者). Directional separation of photogeneration electrons to the Fenton reactive center via amino-mediated microenvironment regulation for high effect photo-Fenton water purification,Applied Catalysis B: Environment and Energy, 2026, 385: 126313 (中科院1区, IF: 21.2)

2. X.R. Li, X.M. Xu, W. Xiao, K. C. Zhang, C. Li, J. Xiao.Quantification of active sites and elucidation of the reaction mechanism of the photocatalytic disinfection on carbon nitride.Journal of Photochemistry and Photobiology A: Chemistry, 2026,480,117343.(中科院2区)

3. J. Bai, J.Xiao, X. Wang, Y.S. Xu, G.Y. Zhong, H. Ji,X.R. Li * (通讯作者), etc.Coupled adsorption and catalysis on S-Scheme PHI/W18O49 via interfacial bond and oxygen vacancy dual-site engineering for enhanced water purification, Materials Research Bulletin,2027, 205:114362.

4. X.R. Li, Q.Liu, W. Xiao,etc.Edge functionalized with benzenesulfonyl groups of g-C3N4 nanosheets as a highly efficient photocatalyst for water purification,Journal of Environmental Chemical Engineering,2024, 12 (6):114207.(中科院2区, IF:7.5)

5. Y. Qin*, P. Qi, J.L. Zhao,X.R. Li* (通讯作者), N. Wang, Q. Li etc. Measurement and accurate prediction of surface tension for VOSO4-H2SO4-H2O ternary electrolyte system at high-concentration in vanadium redox flow batteries,Journal of Molecular Liquids, 2022, 365: 120079. (中科院2区, IF:6.6)

6. Y.S. Guo, L. Wu, C.L. Jiang, J.L. Zhao, L. Feng, K. Zhang, Y. Qin*,X.R. Li*(通讯作者), J.G. Liu, C.W. Yan, etc, Thermodynamic properties and prediction of viscosity for ternary solution (VOSO4+PAA+H2O) in vanadium flow battery, Journal of Molecular Liquids, 2021, 328: 115510. (中科院2区, IF:6.6)

7. Y.X. Song, X.R. Li* (通讯作者), C. Yan, A. Tang*, Unraveling the viscosity impact on volumetric transfer in redox flow batteries,Journal of Power Sources, 2020, 456: 228004. (中科院1区, IF:9.8)

8. Q.B. Liu, X.R. Li* (通讯作者), C.W. Yan, A. Tang*, A dopamine-based high redox potential catholyte for aqueous organic redox flow battery, Journal of Power Sources, 2020, 460: 228124. (中科院1区, IF:9.8)

9. J. Xiong, S.L. Wang,X.R. Li* (通讯作者), Z.G. Yang, J.G. Zhang, C.W. Yan, A. Tang*, Mechanical behavior and Weibull statistics based failure analysis of vanadium flow battery stacks,Journal of Power Sources, 2019, 412: 272-281. (中科院1区, IF:9.8)

10. X.R. Li, C.L. Jiang, J.G Liu, Y. Qin, Z. Zhang, Z. Liu, J.Z Yang, C.W. Yan, Prediction of viscosity for high-concentrated ternary solution (CH3SO3H+VOSO4+H2O) in vanadium flow battery,Journal of Molecular Liquids, 2020, 297: 111908. (中科院2区, IF:6.6)

11. X.R. Li, C. Jiang, Y. Qin, J. Liu, J. Yang, Q. Xu, C. Yan, Investigation of electrolytes of the vanadium redox flow battery (VII): Prediction of the viscosity of mixed electrolyte solution (VOSO4+H2SO4+H2O) based on Eyring's theory,Journal of Chemical Thermodynamics, 2019, 134: 69-75. (中科院2区, IF:3.3)

12. X.R. Li, J. Xiong, A. Tang, Y. Qin, J.G. Liu, C.W. Yan, Investigation of the use of electrolyte viscosity for online state-of-charge monitoring design in vanadium redox flow battery,Applied Energy, 2018, 211: 1050-1059. (中科院1区, IF:11.5)

13. X.R. Li, J. Zhao, Y. Qin, J.G. Liu, C.W. Yanetc. Investigation of the electrolyte properties for the vanadium redox flow battery (VI): Measurement and prediction of surface tension of aqueous VOSO4 at 283.15 to 313.15 K,Journal of Molecular Liquids, 2017, 225: 296-301. (中科院2区, IF:6.6)

14. X.R. Li, Y. Qin, X.W. Guo, C.W. Yan etc. Investigation of electrolytes of the vanadium redox flow battery (IV): Measurement and prediction of viscosity of aqueous VOSO4 solution at 283.15 to 323.15 K,Journal of Molecular Liquids, 2016, 224: 893-899.(中科院2区, IF:6.6)

15. X.R. Li, Y. Qin, X.W. Guo, C.W. Yan etc. Thermodynamic Investigation of Electrolytes of the Vanadium Redox Flow Battery (V): Conductivity and Ionic Dissociation of Vanadyl Sulfate in Aqueous Solution in the 278.15–318.15 K Temperature Range,Journal of Solution Chemistry, 2016, 45,12: 1879-1889.

16. D.W. Zhang, C.L. Yang, J. Xiao, H.W. Wang,X.R. Li, Y.K. Yan,etc.Boosting internal electric field by breaking cell symmetry in polymeric photocatalysts for visible-light-driven sterilization,Journal of Colloid And Interface Science,2026, 703:139130.(中科院1区,IF:9.6)

17. D.W. Zhang, C.L. Yang, H.W. Wang, Y.K. Yan,X.R. Li, J. Zhang, J. Xiao etc, Regulating crystallinity in linear conjugated polymer to boost the internal electric field for remarkable visible-light-driven disinfection,Journal of Materials Science & Technology, 2023, 137: 26-35. (中科院1区,IF:10.3)

18. X. Jun, Q. Liu, M. Song,X.R. Li, Q. Li, J. Shang, Directing photocatalytic pathway to exceedingly high antibacterial activity in water by functionalizing holey ultrathin nanosheets of graphitic carbon nitride,Water research, 2021,198: 117125. (中科院1区, IF:13.4)

19. Y.X. Song, X.R. Li, J. Xiong, L. Yang, G. Pan, C.W. Yan, A. Tang, Electrolyte transfer mechanism and optimization strategy for vanadium flow batteries adopting a Nafion membrane,Journal of Power Sources, 2020, 449: 227503. (中科院1区, IF:9.8)

20. Y.X. Song, X.R. Li, C.W. Yan, A. Tang, Uncovering ionic conductivity impact towards high power vanadium flow battery design and operation,Journal of Power Sources, 2020, 480: 229141. (中科院1区, IF:9.8)

21. H. Chen,X.R. Li, H. Gao, J.G. Liu, C.W. Yan, A. Tang, Numerical modelling and in-depth analysis of multi-stack vanadium flow battery module incorporating transport delay,Applied Energy, 2019, 247: 13-23. (中科院1区, IF:11.5)

22. J. Xiong, Y.X. Song, S.L. Wang,X.R. Li, J.G. Liu, C.W. Yan, A. Tang, Evaluation of the influence of clamping force in electrochemical performance and reliability of vanadium redox flow battery, Journal of Power Sources, 2019, 431: 170-181. (中科院1区, IF:9.8)

23. Y.X. Song, K. Zhang,X.R. Li, C.W. Yan, Q.B. Liu, A. Tang, Tuning the ferrous coordination structure enables a highly reversible Fe anode for long-life all-iron flow batteries,Journal of Materials Chemistry A, 2021, 9(46): 26354. (中科院1区, IF:14.5)

24. K. Zhang, W. Xiao,X.R. Li, J.G. Liu, C.W. Yan, Highly thermostable expanded polytetrafluoroethylene separator with mussel-inspired silica coating for advanced Li-ion batteries,Journal of Power Sources, 2020, 468: 228403. (中科院1区, IF:9.8)

授权发明专利及获奖

1. 沈阳市自然科学学术成果奖,第一完成人,三等奖,2024年。

2. 沈阳市自然科学学术成果奖,第一完成人,三等奖,2025年。

3. 一种儿茶酚类正极电解液及其在液流电池中的应用,ZL 201910826088.5,第一完成人,2023年授权。

4. 一种正负极电解液不同pH值的双膜水相有机液流电池,ZL 202011228555.3,第一完成人,2024年授权。

5. 一种液流电池正负极电解液迁移控制方法,ZL201910826092.1,第三完成人,2022年授权。

6. 一种全钒液流电池系统SOC在线检测方法,ZL201710174974.5,第二完成人,2020年授权。

7. 一种液流电池多孔电极反应动力学参数测试方法,ZL20191082102.1,第三完成人,2019年授权

8. 一种钒电池电解液酸度pH滴定定量测定方法及其应用,ZL201110235785.7,第三完成人,2014年授权。

【教学工作】

本科生课程:主讲《无机非金属材料工艺学》,《科技论文写作》,《工程制图CAD》,《计算机绘图》。

【联系方式】

邮箱:lixiangrong@lnu.edu.cn

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