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.