孙莹
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教育背景\r于2005年、2010年分别在中国地质大学(北京)、北京航空航天大学获学士、博士学位\r\r工作经历\r2022.08-至今 北京航空航天大学物理学院,教授\r2013.06-2022.07 北京航空航天大学物理学院,副教授\r2010.09-2013.06 日本国立物质材料研究机构(NIMS),博士后\r\r奖励与荣誉\r2020年度中国材料研究学会科学技术奖二等奖(排名:2/7)\r\r学术兼职\r《Materials》(Q1区)期刊编委研究领域
""面向航空航天、磁电器件、固态制冷等领域,开展新型功能材料强关联物性研究,包括零膨胀、零电阻温度系数、压磁、压热等""""近期论文
Xiuliang Yuan, Ying Sun*, Huaiming Guo, et al., Design of negative/nearly zero thermal expansion behavior over a wide temperature range by multi-phase composite, MATERIALS and DESIGN 203, 109591, 2021.\r\rJin Cui, Ying Sun*, Xiuliang Yuan, et al., Discovery of negative thermal expansion with giant thermal hysteresis in Fe3NiBx, SCRIPTA MATERIALIA, 183, 149, 2020\r\rYing Sun, Pengwei Hu, Kewen Shi, et al., Giant zero-field cooling exchange-bias-like behavior in antiperovskite Mn3Co0.61Mn0.39N compound, PHYSICAL REVIEW MATERIALS 3(2),024409, 2019\r\rYing Sun,Xiuliang Yuan, Xingbin Tian, et al., Controllable nearly zero thermal expansion behavior in Mn3Zn1-xCrxN (0<= x <= 0.20) compounds, SCRIPTA MATERIALIA 162,108,2019\r\rKewen Shi, Ying Sun*, Claire V Colin, et al., Investigation of the spin-lattice coupling in Mn3Ga1-xSnxN antiperovskites, PHYSICAL REVIEW B 97(5), 054110, 2018.\r\rKewen Shi, Cong Wang, Ying Sun*, et al., Rectifying Characteristics and Semiconductor-Metal Transition Induced by Interfacial Potential in the Mn3CuN/n-Si Intermetallic Heterojunction, ACS APPLIED MATERIALS & INTERFACES 9(14),12592, 2017.\r\rKewen Shi, Ying Sun, Jun Yan, et al., Baromagnetic Effect in Antiperovskite Mn3Ga0.95N0.94 by Neutron Powder Diffraction Analysis, ADVANCED MATERIALS 28(19), 3761, 2016.\r\rSihao Deng, Ying Sun, Lei Wang, et al., Near-zero temperature coefficient of resistivity associated with magnetic ordering in antiperovskite Mn3+xNi1-xN, APPLIED PHYSICS LETTERS 108(4), 041908, 2016.\r\rSihao Deng, Ying Sun*, Hui Wu, et al., Invar-like Behavior of Antiperovskite Mn3+xNi1-xN Compounds, CHEMISTRY OF MATERIALS 27(7), 24951, 2015.\r\rJun Yan, Ying Sun*, Hui Wu, et al., Phase transitions and magnetocaloric effect in Mn3Cu0.89N0.96, ACTA MATERIALIA 74, 58, 2014. 相关热点