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方敏侠 |
1)金属磁性功能材料(铁磁相变、软磁合金等)
2)铁磁、铁弹及铁电材料的相变行为、微观组织结构分析及性能调控
教育经历:
1)2007.9-2011.6 西安交通大学 物理学院 材料物理系 学士;
2)2011.9-2012.6 西安交通大学 材料学院 材料学 硕士;
3)2012.9-2019.12 西安交通大学 前沿院 物理学 博士(导师:任晓兵教授);
4)2014.9-2016.9 日本国立物质材料研究机构NIMS 新材料 联培;
工作经历:
1)2020.3-2023.9 西安交通大学 物理学院 材料物理系 讲师;
2)2023.10-至今 西安交通大学 物理学院 材料物理系 副教授
1. 国家自然科学基金青年项目,2024.01-2026.12,30万,在研,主持;
2. 国家级JG项目,2025.1-2026.12,46万,在研,课题负责人;
3. 中国博士后科学基金第16批特别资助(站中),2023.8-2025.12,18万,在研,主持;
4. 中国博士后科学基金第69批面上资助,2021.6-2022.12,8万,结题,主持;
5. 企业横向,48.5万,2025.6-2025.12,在研,主持;
6. 企业横向,10万,2024.1-2024.12,结题,主持;
7. 陕西省自然科学基础研究计划青年项目,2021.9-2023.8, 结题,主持;
8. 国家重点研发计划项目,2022.11-2025.10,100万,在研,课题骨干;
9. 国家级JG项目,2022.01-2024.12,190万,在研,参与;
10. 国家自然科学基金重点项目,2015.01-2019.12,354万,结题,参与;
11. 国家自然科学基金重点项目,2019.01-2023.12,304万,结题,参与
代表性论文
[1] M. Fang, Y. Ji*, Y. Ni, W. Wang, H. Zhang, X. Wang, A. Xiao, T. Ma, S. Yang*, X. Ren*, Toughening Ceramics down to Cryogenic Temperatures by Reentrant Strain-Glass Transition, Physical Review Letters, 130, 116102 (2023);
[2] M. Fang, F. Tian, K. Cao, X. Ke, Y. Zhang*, S. Yang*, W. Zuo, Y. Liu, T. Ma*, X. Song, Y. Ji, X. Ren, Understanding of the giant magnetic entropy change around the co-occurrence point of martensitic and magnetic transitions in Ni-Mn-In Heusler alloy, Acta Materialia 229, 117839 (2022);
[3] J. Li, M. Fang*, Y. Liu*, X. Song, W. Jia, J. Gou, T. Yuan, Y. Ji, L. Zhao.C. Wang, T. Ma,Enhanced magnetic performance of Fe-rich Sm2Co17-type magnets by optimizing Zr content, Journal of Materials Science &Technology, 193,178-186 (2024);
[4] Y. Tang, K. Cao, R. Ma, J. Wang, Y. Zhang*, D. Zhang, C. Zhou, F. Tian, M. Fang*, S. Yang, Accurate prediction of magnetocaloric effect in NiMn-based Heusler alloys by prioritizing phase transitions through explainable machine learning, Rare Metals, 44,639-651(2025);
[5] M Fang, C Gao, S Liu, J Wang, Y Zhang*, L Liu*, W Zuo, J Li, T Ma, Y Ding, J. Zhao, A. Yan, F. Wang, S. Yang, Understanding of the enhanced coercivity and energy product in Sm (CobalFe0. 27Cu0. 05Zr0. 02)z permanent magnets with lower z value, Journal of Alloys and Compounds, 014, 178691 (2025);
[6] X. Luo#, M. Fang#, L. Miao, J. Zhao, Z. Shen, W. Fan, X. Ma, Z. Wang, A. Shen, J. Zhang, H. Ye, Y. Xing, X. Yao, F. Ma, N. Zhong, S. Cao, C. Duan, S. Dong, L. Li*, Manipulation of magnetic spin textures at room temperature in a van der Waals ferromagnet, Physical Review B, 111, 014442 (2025);
[7] M. Fang, Y. Ji*, Z. Zhang, Y. Yang, C. Liu, D. Wang, L. Zhang, J. Gao, X. Ren*, Re-entrant relaxor-ferroelectric composite showing exceptional electromechanical properties, NPG Asia Materials 10, 1029-1036 (2018);
[8] M. Fang*, S. Rajput, Z. Dai, Y. Ji*, Y. Hao, X. Ren*, Understanding the mechanism of thermal-stable high-performance piezoelectricity, Acta Materialia 169, 155-161 (2019);
[9] M. Yin, M. Fang*, Y. Ji, D. Wang*, X. Ren*, Stabilized piezoelectricity upon ferro-ferro phase transition achieved by aging induced domain memory effect in acceptor doped lead-free ceramics, Scripta Materialia 219, 114872 (2022);
[10] M. Yin, M. Fang*, L. Zhang, C. Zhou, A. Xiao, Y. Ji, T. Ma, X. Ren*, Microscopic origin of the enhanced piezoelectric thermal stability in acceptor doped lead-free Ba(Ti0.8Zr0.2)O3-50(Ba0.7Ca0.3)TiO3 ceramic, Ceramics International 48, 5274-5279 (2022);
[11] F. Tian, Y. Li, Q. Zhao, M. Fang*, R. Zhang, Z. Dai, Z. Yu, X. Ke, Y. Zhang, C. Zhou, S. Yang*, Maximizing Zero-Field-Cooled Exchange Bias in Crystallized Co@CoO Nanocluster Assembled Thin Film by Varying Film Thickness, Journal of Physical Chemistry C 125, 7337-7342 (2021);
科研获奖:
(1) 2023年陕西省自然科学奖,二等奖,铁电材料的储能、压电性能优化及机理研究(4/5)
(2) 2022年陕西高等学校科学技术研究优秀成果奖,二等奖,铁电材料的储能、压电性能优化及机理研究(4/5)
(3)美国陶瓷学会(The American Ceramics Society)2018年相平衡将(The 2018 Richard and Patricia Spriggs Phase Equilibria Award).