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孙莹

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         姓名:孙莹

性别:女

出生年份:1983

职称:副教授

院系:物理科学与核能工程学院

首次聘任导师时间:2014年

 电子信箱:sunying@buaa.edu.cn

办公地点:主楼415

通信地址:北京市海淀区学院路37号,北航,凝聚态物理与材料物理中心

 一、个人简介

(个人基本情况介绍)

2010年获得北京航空航天大学凝聚态物理专业博士学位,之后在日本国立材料科学研究所从事博士后研究工作,20136月作为海外直评副教授引进到北航物理学院工作。近几年在Adv. Mater., Chem. Mater., J. Phys. Chem. C, Acta Mater., Appl. Phys. Lett.等期刊上发表论文50余篇, SCI引用700余次,已授权国家发明专利3项。目前参与国家自然科学基金等多项课题的研究工作。

 二、主要研究方向

主要从事强相关材料体系奇特物性探索研究,分析晶格、磁、电、热输运等在温度、压力、磁场等外场下的响应, 探讨近零热膨胀、近零电阻温度系数、压热、压磁等特殊功能材料的合成、物性与机理。

 三、在研项目

国家自然基金面上项目1项(主持)

国家自然基金重点项目1项(参与)

航空科学基金1项(主持)

航天创新基金1项(主持)

北航青年拔尖人才支持计划项目1项(主持)

四、部分学术论文

1.         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, 2017, 9, 12592-12600.

2.         Sihao Deng, Ying Sun*, Hui Wu, et al., Phase separation and zero thermal expansion in antiperovskite Mn3Zn0.77Mn0.19N0.94: An in situ neutron diffraction investigation, Scripta Materialia, 2017, 146, 18-21.

3.         Huiqing Lu, Ying Sun*, Sihao Deng, et al., Tunable negative thermal expansion and structural evolution in antiperovskite Mn3Ga1−xGexN (0 ≤ x ≤ 1.0), Journal of American Ceramic Society, 2017, 100(12), 5739–5745.

4.         Kewen Shi, Ying Sun, Jun Yan, et al., Baromagnetic Effect in Antiperovskite Mn3Ga0.95N0.94  by Neutron Powder Diffraction Analysis, Advanced Materials, 2016, 28, 3761–3767.

5.         Sihao Deng, Ying Sun*, Hui Wu, et al., Invar-like Behavior of Antiperovskite Mn3+xNi1−xN Compounds, Chemistry of Materials, 2015, 27, 2495−2501.

6.         Sihao Deng, Ying Sun*, Lei Wang, et al., Frustrated Triangular Magnetic Structures of Mn3ZnN: Applications in Thermal Expansion, Journal of Physical Chemistry C, 2015, 119, 24983−24990.

7.         Jun Yan, Ying Sun*, Hui Wu, et al., Phase transitions and magnetocaloric effect in Mn3Cu0.89N0.96Acta Materialia, 2014, 74, 58–65.

8.         Ying Sun*, Yanfeng Guo, Yoshihiro Tsujimoto, et al., Carbon-Induced Ferromagnetism in the Antiferromagnetic Metallic Host Material Mn3ZnN, Inorganic chemistry, 2013, 52(2), 800.

9.         Ying Sun, Cong Wang, Qingzhen Huang, et al., Neutron diffraction study of unusual phase separation in the antiperovskite nitride Mn3ZnN. Inorganic Chemistry, 2012, 51(13), 7232.

10.      Y. S. Sun*, Y. F. Guo, and X. X. Wang et al, Resistive switching phenomenon driven by antiferromagnetic phase separation in an antiperovskite nitride Mn3ZnN. Applied Physics Letters, 2012, 100, 161907.

11.      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, 2016, 108, 041908.

12.      Jun Yan, Ying Sun, Yongchun Wen, et al., Relationship between Spin Ordering, Entropy, and Anomalous Lattice Variation in Mn3Sn1−εSiεC1−δ Compounds, Inorg. Chem. 2014, 53, 2317−2324.

13.      Jun Yan, Ying Sun*, Cong Wang, et al., Study of structure of Mn3Cu0.5Ge0.5N/Cu composite with nearly zero thermal expansion behavior around room temperature, Scripta Materialia, 2014, 84–85, 19–22.

14.      Ying Sun*, Yanfeng Guo, Jun Li, et al., The Unusual Resistivity Behavior and Correlated Magnetic Properties of Antiperovskite Mn3Ag1-xMxN (M = Sn, Zn) Compounds, Science of Advanced Materials, 2014, 6, 1394-1398.

15.       Ying Sun*, Yanfeng Guo, Yoshihiro Tsujimoto, et al., Unusual magnetic hysteresis and the weakened transition behavior induced by Sn substitution in Mn3SbN, Journal of Applied Physics, 2014, 115, 043509.

16.      Ying Sun, Cong Wang, Yongchun Wen, et al. Low temperature coefficient of resistivity induced by magnetic transition and lattice contraction in Mn3NiN compound. Scripta Materialia, 2010, 62, 686-689.

17.      Ying Sun, Cong Wang, Lihua Chu, et al. Negative Thermal Expansion and Correlated Magnetic and Electrical Properties of Si-Doped Mn3GaN Compounds. Journal of American Ceramic Society, 2010, 93 [3], 650–653.

18.      Ying Sun, Cong Wang, Yongchun Wen, et al. Negative thermal expansion and magnetic transition in anti-perovskite structured Mn3Zn1-xSnxN compounds. Journal of American Ceramic society, 2010, 93 [3], 2178–2181.

19.      Ying Sun, Cong Wang, Yongchun Wen, et al. Lattice contraction and magnetic and electronic transport properties of Mn3Zn1−xGexN. Applied Physics Letters, 2007, 91, 231913.

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