代表性成果与荣誉
发表的论文:
[1] Z. Yang, Y. Chen, H. Yang, X. Nie, J. Xi, J. Zhang, W. Liu, M. Yue, Ultrafine Sm2Fe17N3 hard magnetic particles synthesized by mechanochemical process, Applied Materials Today 41 (2024) 102453.
[2] Z. Yang, Y. Wang, H. Xu, Q. Wu, H. Zhang, W. Liu, M. Yue, Strategies for the synthesis of nanostructured SmCo5 magnetic particles for permanent magnetic application, ACS Applied Nano Materials 7 (2024) 4252-4263.
[3] J. Xi, Z. Yang, M. Haseeb, Y. Chen, X. Nie, L. Cong, Q. Wu, E. Fu, H. Zhang, W. Liu, M. Yue, Synthesis of size-controlled and dispersible Sm2Fe17N3 magnetic particles by reduction diffusion process using molten salt, Journal of Rare Earths 42 (2024) 2105-2111.
[4] J. Xi, Z. Yang, X. Wang, H. Zhang, M. Haseeb, Y. Chen, X. Nie, W. Liu, M. Yue, Magnetic properties and microstructure of Ti-doped Sm-Fe-N synthesized by reduction diffusion process, Journal of Magnetism and Magnetic Materials 603 (2024) 172242.
[5] Y. Wang, Z. Yang, H. Xu, L. Cong, C. Li, J. Xi, Q. Wu, W. Liu, Q. Lu, M. Yue, Microwave-assisted chemical synthesis of SmCo5 magnetic particles with high coercivity, Journal of Magnetism and Magnetic Materials 579 (2023) 170855.
[6] Z. Yang, Y. Chen, W. Liu, Y. Wang, Y. Li, D. Zhang, Q. Lu, Q. Wu, H. Zhang, M. Yue, Effects of shape anisotropy on hard-soft exchange-coupled permanent magnets, Nanomaterials 12 (2022) 1261.
[7] Y. Wang, Z. Yang, Q. Wu, W. Liu, Y. Li, H. Zhang, X. Ma, L. Cong, H. Wang, D. Zhang, Q. Lu, M. Yue, Effect of stacking faults on magnetic properties and magnetization reversal in Co nanowires, Materials Characterization 187 (2022) 111861.
[8] Y. Wang, Z. Yang, C. Li, Q. Wu, W. Liu, Y. Li, L. Cong, X. Ma, H. Zhang, Q. Lu, D. Zhang, M. Yue, Enhanced coercivity in Co nanowires via manipulation of head morphology, Journal of Magnetism and Magnetic Materials 561 (2022) 169695.
[9] Z. Yang, D. Cong, Y. Yuan, R. Li, H. Zheng, X. Sun, Z. Nie, Y. Ren, Y. Wang, Large room-temperature elastocaloric effect in a bulk polycrystalline Ni-Ti-Cu-Co alloy with low isothermal stress hysteresis, Applied Materials Today 21 (2020) 100844.
[10] Z. Yang, D. Cong, Y. Yuan, Y. Wu, Z. Nie, R. Li, Y. Wang, Ultrahigh cyclability of a large elastocaloric effect in multiferroic phase-transforming materials, Materials Research Letters 7 (2019) 137-144.
[11] Y. Yuan, Y. Wu, Z. Yang, X. Liang, Z. Lei, H. Huang, H. Wang, X. Liu, K. An, W. Wu, Z.P Lu, Formation, structure and properties of biocompatible TiZrHfNbTa high-entropy alloys, Materials Research Letters 7 (2019) 225-231.
[12] Z. Yang, D.Y. Cong, X.M. Sun, Z.H. Nie, Y.D. Wang, Enhanced cyclability of elastocaloric effect in boron-microalloyed Ni-Mn-In magnetic shape memory alloys, Acta Materialia 127 (2017) 33-42.
[13] Z. Yang, D.Y. Cong, L. Huang, Z.H. Nie, X.M. Sun, Q.H. Zhang, Y.D. Wang, Large elastocaloric effect in a Ni-Co-Mn-Sn magnetic shape memory alloy, Materials & Design 92 (2016) 932-936.