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Faculty

| 先进功能薄膜材料及应用研究室

科研团队

首席教授
研究室成员
  • 滕蛟

    系所:材料物理与化学系

    职称: 教授

    E-mail: tengjiao@mater.ustb.edu.cn

    办公地点:金物楼109

  • 冯春

    系所:材料物理与化学系

    职称: 教授

    E-mail: fengchun@ustb.edu.cn

    办公地点:材料测试中心308

  • 李明华

    系所:材料物理与化学系

    职称: 副教授

    E-mail: mhli@ustb.edu.cn

    办公地点:金物楼404

  • 曹易

    系所:材料物理与化学系

    职称: 副教授

    E-mail: caoyi@ustb.edu.cn

    办公地点:测试楼308

  • 主要研究方向
  • 代表性科研项目
  • 代表性科研成果
  • 专利
  • 1. 信息存储材料的设计和制备;

    2. 高灵敏磁传感器材料的设计和制备;

    3. 第四代宽禁带半导体GaO材料及其光电器件的设计和制备;

    4. 芯片设计及微纳加工;

    5. 机器人智能关节一体化;

    6. 拓扑绝缘体材料的设计和制备;


  • 1. 国家重点研发计划重点专项: 医疗影像装备关键传感器开发及示范应用

    2. 国家重点研发计划重点专项: 高性能磁传感器及磁编码伺服驱动一体化关键技术研究;

    3. 国家重点研发计划重点专项: 超高纯铁磁性稀有稀贵金属靶材制备技术与产业化;

    4. 国家重大科学研究计划:垂直磁各向异性铁磁/半导体异质结构中自旋调控;

    5. 国家自然科学基金重点项目: 基于反常霍尔效应的新型自旋电子材料微结构调控和电磁性能;

    6. 国家自然科学面上项目: 铁磁/氧化物异质结构的界面氧行为调控及其对磁性能影响的研究;

    7. 国家自然科学面上项目: 重金属/铁磁基多层膜中磁相互作用调控及其对磁畴特性的影响机理研究;

    8. 国家自然科学面上项目: 拓扑绝缘体表面态自旋轨道矩(SOT)调控研究

    9. 国家自然科学面上项目: 提高纳米晶拓扑绝缘体自旋轨道转矩效率的机制研究;

    10. 北京市教委科技计划: 高性能磁传感器及磁编码伺服驱动系统集成关键技术研究;


  • 1. Chun Feng, Fei Meng, Yadong Wang, Jiawei Jiang, Nasir Mehmood, Yi Cao, Xiaowei Lv, Feng Yang, Lei Wang, Yongkang Zhao, Shuai Xie, Zhipeng Hou, Wenbo Mi, Yong Peng, Kaiyou Wang, Xingsen Gao, Guanghua Yu, Junming Liu, Field-free manipulation of skyrmion creation and annihilation by tunable strain engineering. Advanced Functional Materials, 31: 2008715 (2021).

    2. Chun Feng, Yukun Li, Lei Wang, Yi Cao, Mingke Yao, Fei Meng, Feng Yang, Baohe Li, Kaiyou Wang, Guanghua Yu, Giant strain control of antiferromagnetic moment in metallic FeMn by tuning exchange spring structure. Advanced Functional Materials, 31: 1909708 (2020).

    3. Yadong Wang, Lei Wang, Jing Xia, Zhengxun Lai, Guo Tian, Xichao Zhang, Zhipeng Hou, Xingsen Gao, Wenbo Mi, Chun Feng, Min Zeng, Guofu Zhou, Guanghua Yu, Guangheng Wu, Yan Zhou, Wenhong Wang, Xi-xiang Zhang, Junming Liu, Electric-field-driven non-volatile multi-state switching of individual skyrmions in a multiferroic heterostructure. Nature Communications, 11:3577 (2020).

    4. Yongkang Zhao, Yukun Li, Fei Meng, Shuai Xie, Xiulan Xu, Baohe Li, Chun Feng, Guanghua Yu, Broad Magnetic Anisotropy Regulation in As-Deposited Pt/Co/MgO Multilayers by Tuning Electronic Coordination. Applied Physics Letters, 118: 252401 (2021).

    5. Fei Meng, Chun Feng, Lei Wang, Yukun Li, Mingke Yao, Xiulan Xu, Baohe Li, Qiang Hu, Lang Hu, Guanghua Yu, Enhancement of perpendicular magnetic anisotropy of ferromagnet/oxide heterointerface by an oxygen-dependent orbital modulation. Applied Physics Letters, 116: 022414 (2020).

    6. Qixun Guo, Yu Wu, Longxiang Xu, Yan Gong, Yunbo Ou, Yang Liu, Leilei Li, Yu Yan, Gang Han, Dongwei Wang, Lihua Wang, Shibing Long, Bowei Zhang, Xun Cao, Shanwu Yang, Xuemin Wang, Yizhong Huang, Tao Liu, Guanghua Yu, Ke He, Jiao Teng,Electrically Tunable Wafer-Sized Three-Dimensional Topological Insulator Thin Films Grown by Magnetron Sputtering,Chinese Physical Letters, 37: 057301 (2020).

    7. Shiru Wang, Mingke Yao, Zirun Li, Chun Feng, Lei Wang, Xiaolei Tang, Peng Kang, Bin Zhang, Wenbo Mi, Guanghua Yu, Nitrogen tuned charge redistribution and orbital reconfiguration in Fe/MgO interface for significant interfacial magnetism tunability. Advanced Functional Materials, 29: 1806677 (2019).

    8. WenLin Peng, JingYan Zhang, GuoNan Feng, XuLan Xu, ChenYang, YunLong Jia, Guanghua Yu, Tunable damping-like and field-like spin-orbit-torque in Pt/Co/HfO2 films via interfacial charge transfer, Applied Physics Letters, 115: 172403 (2019).

    9. WenLin Peng, JingYan Zhang, GuoNan Feng, XiuLan Xu, Chen Yang, YunLong Jia, GuangHua Yu, Enhancement of spin–orbit torque via interfacial hydrogen and oxygen ion manipulation, Applied Physics Letters, 115: 092402 (2019).

    10. Lei Wang, Chen Liu, Nasir Mehmood, Gang Han, Yadong Wang, Xiulan Xu, Chun Feng, Zhipeng Hou, Yong Peng, Xingsen Gao, and Guanghua Yu, Construction of a Room-temperature Pt/Co/Ta Multilayer Film with Ultrahigh-density Skyrmions for Memory Application. ACS Applied Materials & Interfaces, 11: 12098 (2019).

    11. Chun Feng, Shiru Wang, Li Yin, Xujing Li, Mingke Yao, Feng Yang, Xiaolei Tang, Lei Wang, Wenbo Mi, and Guanghua Yu, “Significant strain induced orbital reconstruction and strong interfacial magnetism in TiNi(Nb)/ferromagnet/oxide heterostructures via oxygen manipulation”, Advanced Functional Materials, 28: 1803335 (2018).

    12. Lihua Wang, Jiao Teng, Xuechao Sha, Jin Zou, Ze Zhang, and Xiaodong Han, “Plastic Deformation through Dislocation Saturation in Ultrasmall Pt Nanocrystals and Its in Situ Atomistic Mechanisms”, Nano Letters, 17, 4733 (2017).


  • 1. 一种调控铁磁多层膜DM相互作用的方法.

    2. 一种调控反铁磁薄膜材料的磁矩排列的方法.

    3. 增加铁磁金属/氧化物双层膜的界面磁各向异性能的方法.

    4. 一种制备FePt赝自旋阀材料的方法.

    5. 一种利用大弹性应变提高磁记录薄膜的剩磁比的方法.

    6. 提高Co/Pt薄膜材料的自旋-轨道耦合强度的方法.

    7. 一种磁电阻薄膜材料及其制备方法

    8. 一种具有垂直磁各向异性的磁性薄膜材料及其制备方法

    9. 一种提高各向异性磁电阻坡莫合金热稳定性的方法

    10. 一种提高交换偏置薄膜磁性和热稳定性的方法


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