| 教育经历: (1)2020.9-2024.6,昆明理工大学,博士研究生 (2)2015.9-2018.6,昆明理工大学,硕士研究生 (3)2011.8-2015.7,西安理工大学,本科 工作经历: (1)2024.9---至今,昆明理工大学,特聘教授、硕士生导师 (2)2018.6-2020.8,昆明理工大学,实验员 科研项目: (1)昆明理工大学三层次人才科研平台建设经费,500万,2024.9-2032.9,主持 (2)国家自然科学基金,稀土钽酸盐RETaO4陶瓷的抗CMAS腐蚀性能及微纳界面结构演变机制研究,2026.1-2028.12,主持 (3)ZYJW装发部“慧眼行动”,超高温钽酸盐热障涂层,2023.2-2025.2,参与 (4) 中国航发重点专项,xxx叶片高结合力、低导热涂层,2024.1-2025.9,参与 (5)中国航发重大专项,钽酸盐涂层涂覆工艺研究,2020.2-2023.6,参与 学术成果: 现任昆明理工大学材料学院材料加工工程系主任、国防重点学科与技术研究中心副主任、教育部重点实验室副主任;主持国家与省部级项目8项,长期从事超高温热防护涂层材料的研究。曾获中国稀土科技一等奖、建筑材料科学技术奖一等奖、中国发明协会一等奖、云南省教学成果二等奖、日内瓦发明展国际金奖等奖励。截止2026年4月在Prog. Mater. Sci.、Adv. Mater.、Acta Mater.、J. Adv. Ceram.、美陶、欧陶、APL等期刊发表论文90余篇,引用3000余次,H=30;授权国家发明专利50余项、美国专利5项、日本专利3项。担任中国稀土学会热防护材料分会秘书长、中国硅酸盐学会特陶青委会副秘书长、Rare Met.副主编等兼职;先后在先进陶瓷国际研讨会、中国材料大会和全国高技术陶瓷学术年会等会议进行邀请报告20余次。 【近期发表部分代表性论文】 1. L. Chen*(Corresponding author), B.H. Li, J. Feng. Rare-earth tantalates for next-generation thermal barrier coatings. Prog. Mater. Sci. 144 (2024) 101265. (IF=40.0,ESI高被引论文) 2. B.H. Li, J.K. Wang, L. Chen* (Corresponding author), X.D. Zheng, X.L. Chen, Y. Shen*, J. Feng*. Breaking the trade-off relationship between thermal conductivity and toughness of ferroelastic oxide ceramics via a high-density dislocation strategy. Adv. Mater. 38 (2026) e23083. (IF=26.8) 3. L. Chen, M. Y. Hu, J. K. Wang, B. H. Li, J. Feng. Dominant mechanisms of thermo-mechanical properties of weberite-type RE3TaO7 (RE = La, Pr, Nd, Eu, Gd, Dy) tantalates toward multifunctional thermal/environmental barrier coating applications. Acta Mater. 270 (2024) 119857. 4. L. Chen, M.Y. Hu, X.D. Zheng, Jing Feng. Characteristics of ferroelastic domains and thermal transport limits in HfO2 alloying YTaO4 ceramics. Acta Mater. 251 (2023) 118870. 5. L. Chen, M.Y. Hu, J. Feng*. Defect-dominated phonon scattering processes and thermal transports of ferroelastic (Sm1-XYbX)TaO4 solid solutions. Mater. Today Phys. 35 (2023) 101118. 6. J. K. Wang, L. Chen* (Corresponding author), L.Y. Zhang, H. Xu, Q.L. Zhou, J, Feng*. Structural evolutions and failure mechanisms of APS tantalate high-entropy ceramics coatings response to thermal cycle up to 1500 ºC. J. Adv. Ceram. 15 (2026) 9221261. (IF=16.6) 7. L. Chen, J.K. Wang, B.H. Li, K.R. Luo, J. Feng*. Simultaneous manipulations of thermal expansion and conductivity in symbiotic ScTaO4/SmTaO4 composites via multiscale effects. J. Adv. Ceram. 12 (2023) 1625-1640. (IF=16.6,期刊封面论文) 8. L. Chen, J.K. Wang, L.Y. Zhang, B.H. Li, K.R. Luo, J. Tian, H. Xu, J. Feng*. Rare-earth tantalates RETaO4 toward multifunctional thermal/environmental barrier coatings (T/EBCs): A perspective. J. Am. Ceram. Soc. 106 107 (2024) 1822-1834.(美国陶瓷协会陶瓷领域世纪开拓者邀请专刊) 9. L. Chen, B.H. Li, J. Guo, et al. High-entropy perovskite RETa3O9 ceramics for high-temperature environmental/thermal barrier coatings. J. Adv. Ceram. 11 (2022) 556-569. (IF=16.6,ESI高被引论文, BEST PAPER AWARD) 10. L. Chen, M.Y. Hu, P. Wu, J. Feng*, Thermal expansion performance and intrinsic lattice thermal conductivity of ferroelastic RETaO4 ceramics. J Am Ceram Soc. 2019;102: 4809-4821. 11. L. Chen, K.R. Luo, B.H. Li, M.Y. Hu, J. Feng*. Mechanical property enhancements and amorphous thermal transports of ordered weberite-type RE3Nb/TaO7 high-entropy oxides. J. Adv. Ceram. 12 (2023) 399-413. (IF=16.6) 12. L. Chen, Y.T. Wang, M.Y. Hu, J. Feng*, et al. Achieved limit thermal conductivity and enhancements of mechanical properties in fluorite RE3NbO7 via entropy engineering. Appl. Phys. Lett. 118 (2021) 071905. 13. L.Y. Zhang, L. Chen* (Corresponding author), J.K. Wang, et al., Simultaneously reduced thermal expansion coefficients and conductivity of SiO2–AlTaO4 oxides with the enhanced toughness. J. Am. Ceram. Soc. 108 (2025) e70185. 14. G.Y. Xue, J.K. Wang, C.Y. Li, C. Xu, C. Li, L. Chen* (Corresponding author), J. Feng. High-entropy effects enhance atomic displacements to manipulate thermal/oxygen ionic transport properties of ordered RE3MO7 ceramics. Rare Met. 44 (2025) 10660-10671. (期刊封面论文) 15. L. Chen, M.Y. Hu. J. Guo, X.Y. Chong, J. Feng*, Mechanical and thermal properties of RETaO4 (RE = Yb, Lu, Sc) ceramics with monoclinic-prime phase. J. Mater. Sci. Technol. 52 (2020) 20-28. (IF=14.3) 奖励与荣誉: [1] 2026,中国建筑材料科学技术奖一等奖 [2] 2024,中国稀土科技奖一等奖 [3] 2025,中国冶金教育学会优秀博士学位论文 [4] 2024,中国技术市场协会金桥奖一等奖 [5] 2022,中国发明协会一等奖 [6] 2023,云南省教学成果奖二等奖 [7] 2024,中国有色金属工业科学技术奖二等奖 [8] 2023,日内瓦发明展国际金奖 |