刘炯杰 副研究员 博士 江苏省 研究领域: 精细化工 研究方向: 1、极端环境下航空航天材料(高强、高韧、高导热、耐磨损材料) 2、低维材料与能源催化(MAX/MAB、MXenes、固态电解质、高温催化剂) 3、增材制造(3D打印聚合物先驱体陶瓷) 所在单位: 东南大学

基本信息

所在单位:
东南大学
机构细分:
材料科学与工程学院
单位类型:
高等院校
职务:
副研究员
职称:
副研究员
最高学历:
博士
专家介绍:
刘炯杰,东南大学材料科学与工程学院副研究员,紫金青年学者,玛丽居里学者。2020年在中国科学院兰州化学物理研究所润滑材料全国重点实验室获得博士学位。2020-2023年于德国达姆施塔特工业大学(德国最顶尖理工大学TU9联盟成员)从事博士后研究,合作导师为世界陶瓷科学院院士Ralf Riedel教授。2023-2025年受欧盟“玛丽·居里学者计划”项目资助,于荷兰埃因霍温理工大学从事博士后研究,合作导师为Marc Geers教授(欧洲力学协会主席,European Journal Of Mechanics A-solids主编)。研究成果集中发表在陶瓷及摩擦学领域专业期刊,发表SCI论文21篇,其中以第一作者在Journal of the European Ceramic Society、Journal of the American Ceramic Society、Tribology International等高水平期刊发表论文12篇,授权中国发明专利5件,部分成果曾入选国家“十三五”科技创新成就展。
专家荣誉:
2025紫金青年学者(合作单位:东南大学)
2023玛丽居里学者(合作单位:荷兰埃因霍温理工大学,法国巴黎综合理工学院)
2022德国优秀青年学者(合作单位:德国达姆施塔特工业大学)
2020DAAD学者(合作单位:德国达姆施塔特工业大学)
2020中国科学院朱李月华优秀博士生(合作单位:中国科学院大学)

科研能力

研究领域:
精细化工
研究方向:
1、极端环境下航空航天材料(高强、高韧、高导热、耐磨损材料)
2、低维材料与能源催化(MAX/MAB、MXenes、固态电解质、高温催化剂)
3、增材制造(3D打印聚合物先驱体陶瓷)
论文著作:
[1] J. Liu, Q. Dai*, C. Yan, D. Giuntini, R. Riedel, Preparation of polymer-derived SiOC-Cu ceramic composites and their tribological performance[J]. Journal of the European Ceramic Society, 2024, 44(5): 3065-3073.
[2] J. Liu*, C. Tian, T. Jiang, E. Ricohermoso III, Z. Yu*, E. Ionescu, L.Molina-Luna, J. Hofmann, R. Riedel, Polymer-derived SiOC ceramics: A potential catalyst support controlled by the sintering temperature and carbon content[J]. Journal of the European Ceramic Society, 2023, 43(8): 3191-3200.
[3] J. Liu*, W. Li, E. Ricohermoso III, Z. Qiao, Q. Dai, X. Liu, J. Xie, E. Ionescu, A. Weidenkaff, R. Riedel, Temperature-dependent mechanical and oxidation behavior of in-situ formed ZrN/ZrO2-containing Si3N4-based composite[J]. Journal of the American Ceramic Society, 2023.
[4] J. Liu*, E. Ricohermoso III, W. Li, X. Liu, Z. Qiao*, E. Ionescu, R. Riedel, Phase composition, microstructure, and mechanical properties of polymer-derived SiOC glass-ceramics reinforced by WC particles, Journal of the European Ceramic Society 42(5) (2022) 1955-1962.
[5] J. Liu, C. Dong, X. Lu, Z. Qiao*, F. Zhou, W. Liu, R. Riedel, Sn-containing Si3N4-based composites for adaptive excellent friction and wear in a wide temperature range, Journal of the European Ceramic Society 42(3) (2022) 913-920.
[6] J. Liu, J. Yang, G. Yi, J. Ma, Y. Yu, Z. Qiao*, B. Hu, W. Liu, Effect of high-temperature oxidation on Si3N4 containing Ti3AlC2, Ceramics International 46(10) (2020) 14697-14705.
[7] J. Liu, J. Yang, S. Zhu, J. Cheng, Y. Yu, Z. Qiao*, W. Liu, Temperature-driven wear behavior of Si3N4-based ceramic reinforced by in situ formed TiC0.3N0.7 particles, Journal of the American Ceramic Society 102(7) (2019) 4333-4343.
[8] J. Liu, Z. Wang, J. Yang, H. Tan, Z. Qiao*, W. Liu, TiO2-supported 2D layered carbon derived from CO2 oxidation Ti3C2 for strengthening Si3N4 ceramic, Materials Letters 256 (2019).
[9] J. Liu, Z. Wang, B. Yin, J. Yang, Q. Sun, Y. Liu, H. Tan, Z. Qiao*, A novel method to prepare self-lubricity of Si3N4/Ag composite: Microstructure, mechanical and tribological properties, Journal of the American Ceramic Society 101(9) (2018) 3745-3748.
[10] J. Liu, J. Yang*, Y. Yu, Q. Sun, Z. Qiao*, W. Liu, Self-Lubricating Si3N4-based composites toughened by in situ formation of silver, Ceramics International 44(12) (2018) 14327-14334.
[11] J. Liu, Z. Wang, J. Yang, B. Yin, Q. Sun, Y. Liu, S. Wang, Z. Qiao*, Study on tribological behaviors of Si3N4 based ceramics sliding against POM under different solutions, Tribology International 118 (2018) 368-372.
[12] N. Dong, B. Li, L. Chao, Y. Zhu, L. Liu, J. Liu, G. Ying, Optimization of Si3N4 fiber and BN interface for high mechanical properties and thermal-shock resistance of Si3N4/BN composites[J]. Journal of Alloys and Compounds, 2025: 182573.
[13] S, Zhang, J. Liu, H. Tang, Y. Yu, L. Wang, Z. Qiao. Optimized preparation and mechanical properties of high-entropy boride ceramics[J]. Materials Today Communications, 2025, 44: 111926.
[14] W. Li, M. Widenmeyer, J. Ding, T. Jiang, L. Feldmann, J. Liu , L. Molina-Luna, A. Weidenkaff, R. Riedel, Z. Yu, Phase evolution and oxidation resistance of Si3N4/HfB2/HfBxCyN1–x–y ceramic nanocomposites prepared from tailored preceramic polymers[J]. Ceramics International, 2023, 49(21): 34164-34172.
[15] G. Wang, J. Liu, X. Liu X, M. Li, J. Liu, C. Nan, Y. Fang, J. Xue, X. Fan, H. Xu, X. Liu, L. Cheng, Oxidation-resistant vitamin C/MXene foam via surface hydrogen bonding for stable electromagnetic interference shielding in air ambient[J]. Applied Surface Science, 2023, 610: 155396.
[16] S. Chen, Q. Dai, X. Yang, J. Liu, W. Huang, X. Wang, Bioinspired functional structures for lubricant control at surfaces and interfaces: wedged-groove with oriented capillary patterns[J]. ACS Applied Materials & Interfaces, 2022, 14(37): 42635-42644.
[17] Y. Yu, P. Shi, K. Feng, J. Liu, J. Cheng, Z. Qiao*, J. Yang, J. Li*, W. Liu, Effects of Ti and Cu on the microstructure evolution of AlCoCrFeNi high-entropy alloy during heat treatment, Acta Metallurgica Sinica (English Letters) 33(8) (2020) 1077-1090.
[18] Q. Sun, Z. Wang, J. Yang, Y. Liu, J. Liu, Z. Qiao*, W. Liu, High-performance TiN reinforced Sialon matrix composites: a good combination of excellent toughness and tribological properties at a wide temperature range, Ceramics International 44(14) (2018) 17258-17265.
[19] Q. Sun, Z. Wang, B. Yin, J. Yang, J. Liu, Y. Liu, J. Cheng, S. Zhu, Z. Qiao*, The tribological properties and wear mechanism of copper coated graphite doped Sialon ceramic composites at wide range temperature from 25 to 800 °C, Tribology International 123 (2018) 10-16.
[20] Q. Sun, J. Yang, B. Yin, H. Tan, Y. Liu, J. Liu, J. Cheng, Z. Qiao*, W. Liu, Dry sliding wear behavior of β-Sialon ceramics at wide range temperature from 25 to 800 °C, Journal of the European Ceramic Society 37(15) (2017) 4505-4513.
科研项目:
1、润滑材料全国重点实验室开放课题(2026-2028,主持,在研)
2、江苏省自然科学基金,青年项目(2025-2027, 主持, 在研)
3、欧盟玛丽居里项目(2023-2025, 主持, 结题)
4、德国优秀青年学者桥梁基金( 2022-2023, 主持, 结题)
5、中德博士后奖学金(2020-2022, 主持, 结题)
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