姓名: 孫瑩(教授,博導)
Email:sunying@buaa.edu.cn
辦公地點:沙河校區主樓C座
研究方向:面向航空航天、磁電器件、固态制冷等領域,開展新型功能材料強關聯物性研究,包括零膨脹、零電阻溫度系數、壓磁、壓熱等。
個人簡介:
在Adv. Mater., Chem. Mater., Acta Mater., Phys. Rev. B等期刊發表SCI論文70餘篇, SCI引用1700餘次,已授權國家發明專利7項。承擔國家自然科學基金、北京市自然科學基金、航空科學基金等多項課題。
教育背景:
于2005年、2010年分别在中國地質大學(北京)、beat365英国官网网站獲學士、博士學位
工作經曆:
2022.08-至今
beat365英国官网网站beat365英国官网网站,教授
2013.06-2022.07
beat365英国官网网站beat365英国官网网站,副教授
2010.09-2013.06
日本國立物質材料研究機構(NIMS),博士後
獎勵與榮譽:
2020年度中國材料研究學會科學技術獎二等獎(排名:2/7)
學術兼職:
《Materials》(Q1區)期刊編委
承擔項目:
國家自然基金面上項目2項(主持)
國家自然基金重點項目1項(參與)
北京市自然基金面上項目1項(主持)
航空科學基金2項(主持)
北航青年拔尖人才支持計劃項目1項(主持)
代表性學術成果:
[1]. 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.
[2]. Jin Cui, Ying Sun*, Xiuliang Yuan, et al., Discovery of negative thermal expansion with giant thermal hysteresis in Fe3NiBx, SCRIPTA MATERIALIA, 183, 149, 2020
[3]. Ying 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
[4]. Ying 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
[5]. Kewen 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.
[6]. Kewen 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.
[7]. Kewen 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.
[8]. Sihao 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.
[9]. Sihao Deng, Ying Sun*, Hui Wu, et al., Invar-like Behavior of Antiperovskite Mn3+xNi1-xN Compounds, CHEMISTRY OF MATERIALS 27(7), 24951, 2015.
[10]. Jun Yan, Ying Sun*, Hui Wu, et al., Phase transitions and magnetocaloric effect in Mn3Cu0.89N0.96, ACTA MATERIALIA 74, 58, 2014.