王可教授

发布者:徐海岩发布时间:2022-03-02浏览次数:8467

一、导师简介

王可教授,男,江西南昌人,中共党员。华中科技大学电子科学与技术系本科(94)、硕士(97)和博士(微电子学与固体电子学,2000)。福建省“闽江”学者,德国“洪堡”学者(亚琛工大)。多年来一直从事磁、光、电信息存储技术与薄膜器件芯片新制备方法的研究,应用于大容量硬盘、蓝绿光盘和低功耗相变存储器等领域。发表SCI期刊论文70余篇,引用500余次。申请发明专利10项。编辑出版国际会议论文集四部,当前担任10余个英文期刊编委。

联系方式:wang@ecut.edu.cn

二、近期发表的学术论文(2015-今)

2024

1.Ke Wang*,Zhenxiao Nie,, Shangqian Wang, Jian Liu,Jiangwei Cao, Daniel Wamwangi, MgAl2O4 capping effects on the magnetic properties of TbFeCo films, Materials Letters 366 (2024) 136499

2.Ke Wang*,Xiaoyong Fu, Lin Yu, Jian Liu, Jagadish Kumar G., Rui Xiong, Engineering Interfacial perpendicular magnetic anisotropy of Co2FeSi/Pt multilayers deposited on amorphous dielectric Ta2O5, Materials Science & Engineering: B, 301, 2024, 117173

2023

3.Ke Wang*,Liang Wu, Zikun Xu, Zhihong Lu, Rui Xiong, Extraordinary Hall effect of sputtered amorphous ferrimagnetic GdFeCo alloy films, Materials Today Communications 35 (2023) 10602.

4.Ke Wang*,Zikun Xu, Xiaoyong Fu, Zhihong Lu, Rui Xiong, Magnetic and structural properties of sputtered thick Co2FeSi alloy films, Journal of Magnetism and Magnetic Materials, 570, (2023) 170557

5.Ke Wang*,Zhenxiao Nie, Yalin Wang, Zhihong Lu, Rui Xiong, Engineering perpendicular magnetic properties of Pt/Co2MnSi multilayered structures capped with dielectric Ta2O5, Surfaces and Interfaces 37 (2023) 102690

6.Ke Wang*,Wolin Ling, Zikun Xu, Liang Wu, Xiaoyong Fu, Insertion layer effects of ultrathin MgAl2O4 oxide on perpendicular magnetic anisotropy properties of Pt/Co2MnSi/MgAl2O4/Pt structures, Materials Science & Engineering B, 292, (2023) 116441

2022

7.Ke Wang*,Yongming Tang, Jian Liu, Caiyin You, Long You, Perpendicular magnetic properties of sputtered Pt/Co2MnSi/MgO nanostructures, Materials Science and Engineering: B,278, 115629, (2022)

8.Ke Wang*,Wolin Ling, Jian Liu, Cailei Yuan, Rui Xiong, Pt capping effects on the perpendicular magnetic properties of Pt/Co2MnSi/MgAl2O4 trilayer, European Physical Journal Plus, 2022, 137(438)

9.Ke Wang*,Xiaopeng Xiao, Cailei Yuan, Rui Xiong, Wolin Ling, Design and fabrication of Co2FeSi/Pt multilayers with perpendicular magnetic anisotropy,Journal of Magnetism and Magnetic Materials, 2022, 552(1): 169227-1.

10.Ke Wang*,Zikun Xu, Lin Yu, Mingzhi Zhang, Xitao Guo, Interfacial perpendicular magnetic anisotropy in Co2FeSi alloy films sandwiched by Pt and MgAl2O4, Journal of Magnetism and Magnetic Materials, 2022, 560: 169643

11.Ke Wang*,Liang Wu, Lin Yu, Yongming Tang, Rui Xiong, Magnetic properties of amorphous ferrromagnetic Co2MnSi/Pt multilayers, Thin Solid Films, 2022, 752: 139251.

2021

12.Ke Wang*,Xiaopeng Xiao, ZiKun Xu, Liang Wu, Jian LiuAnnealing effects and perpendicular magnetic properties of sputtered Co2FeSi alloy filmsApplied Physics A, 127, 725 (2021)

13.Ke Wang*,Jie Ma, Jun Shi, Xiaopeng Xiao, Yalin Wang, Juanjuan Qi, Jian LiuTuning perpendicular magnetic properties of sputtered rare-earth transition metal GdFeCo alloy films, Journal of Superconductivity and Novel Magnetism,34(9), 2455-24612021

14.Ke Wang*,Yongming Tang, Xiaopeng Xiao, Zhan Xu, Jian LiuFabrication of TbFeCo alloy films with tunable perpendicular coercivity evaluated by extraordinary Hall effect measurements, Journal of Materials Science 56, 4013–4021, 2021

15.Ke Wang*,Yongming Tang, Keyi Zhang, Yahong Wang, Jian Liu, Thermal degradation behavior of amorphous GdFeCo alloy films with perpendicular anisotropy, Materials Science and Engineering B 263 (2021) 114848-1-5.

2020

16.Ke Wang*,Yongming Tang, Xiaopeng Xiao, Jian Liu, Effects of Pd- and Ta-buffer layer on magnetic and interfacial perpendicular properties of sputtered Co2FeSi/MgO heterostructures, Surface Engineering, 37(4), 497-504,2021

17. Jian Liu, Huafeng Yang, Zhongyuan Ma, Kunji Chen, Xinfan Huang and Ke WangHfO2/TiOx bilayer structure memristor withlinear conductance tuning for high density memory and neuromorphic computingJ. Appl. Phys. 128, 184902 (2020)

2019

18.K. Wang*,Yahong Wang, Jie Ma, Zhan Xu, Sputtering fabrication of GdFeCo alloy films with perpendicular magnetic anisotropy, Vacuum, 163, 75–80, 2019

19. K. Wang*,Shuo Dong, Zhan Xu, Thickness and substrate effects on the perpendicular magnetic properties of ultra-thin TbFeCo films, Surface and Coatings Technology, Vol. 359, 296-299, 2019SCI一区)

20.Ke Wang*,Zhan Xu, Shuo DongA simple method for tuning perpendicular magnetic properties of ultra-thin TbFeCo filmsMaterials Letters2362019 89-91

2018

21.K Wang*F. LingD. GongG. Wang R. ChenY. Huang, Temperature dependent magnetic, electrical and optical properties in CoFeAlSi Heusler alloy thin films, Materials Chemistry & Physics, 214, 2018, 355-358

22.Ke Wang*,Zhan Xu, Fujin Ling, Yahong Wang, Shuo Dong, Annealing and thickness effects on magnetic properties of Co2FeAl alloy films, Applied Surface Science 435 (2018) 1125–1135SCI一区)

23.Ke Wang*,Yahong Wang, Fujin Ling, Zhan Xu, Perpendicular exchange coupling effects in ferrimagnetic TbFeCo/GdFeCo hard/soft structures, Journal of Magnetism and Magnetic Materials, 452 (2018) 153-156

2017

24.Ke Wang*,Shuo Dong, Ya Huang, Yuzhen Qiu, Magnetic and thermal properties of amorphous TbFeCo alloy films, Journal of Magnetism and Magnetic Materials ,434 (2017)169-173

25.Ke Wang*,Zhan Xu, Ya Huang, Ruofei Chen, Interfacial perpendicular magnetic anisotropy and magnetic properties of Pd/Co2FeAl0.5 Si0.5 /MgO structured films, Materials & Design, 114 (2017) 557-562SCI一区)

26.KeWang*,Ya Huang, Zhan Xu, Shuo Dong, Ruofei Chen, Effect of sputtering power on the magnetic properties of amorphous perpendicular TbFeCo films, Journal of Magnetism and Magnetic Materials 424 (2017) 89–92

2016

27.Ke Wang*,Zhan Xu, Shuo Dong, Qiu Yuzhen, Ya Huang, Magnetic, thermal, electrical properties and crystallization kinetics of Co60Fe20B20 alloy films, SCIENCE CHINA Materials 59 (2016) 639-647,SCI一区)

28. Ke Wang*,Ruofei Chen, Ya Huang, Sputtering preparation and magnetic properties of amorphous TbFeCo films, Journal of Non-Crystalline Solids, 2016Vol. 450, 82-86, 2016

29.Ke Wang*,Ruofei Chen, Zhan Xu, Shuo Dong, Ya Huang, Thermal effect on structure and magnetic properties in CoFeAlSi alloy films, Materials & Design, Vol.107, 290-294, 2016SCI一区

30.Ke Wang*,Shuo Dong, Zhan Xu, Ya Huang, Crystallization and magnetic properties in amorphous Co2MnSi alloy films, Materials Letters, Vol.180, 140-143, 2016

31.Ke Wang*,Ya Huang, Zhan Xu, Yiyang Hu, Shuo Dong, Crystallization and high temperature functional properties in CoFeB films, Solid State Communications, Vol. 234-235, 31-34, 2016

32.Ke Wang*,Ya Huang, Ruofei Chen, Zhan Xu, Investigation of magnetic properties in thick Co40Fe40B20 alloy films for controllable anisotropy, Applied Physics A, 122(2), 1-5, 2016

33.Ke Wang*,Ya Huang, Ruofei Chen, Zhan Xu, Structural and electrical properties of heterojunction devices formed by spinning TIPS Pentacene thin films on n-Si substrates, Applied Surface Science 388, 376–380, (2016)SCI一区)

2015

34. K. Wang*,Y. Huang, Y. Z. Qiu, R. F. Chen, P. Heard, S. Bending, Magnetic properties of ultrathin Co/Pt multilayer Hall devices irradiated using focused ion beam, Physica B, Vol.476, 158-160, 2015

35.K Wang*,Y. Xiang, C. W. Chen, F. J. Zhuang, X. F. Wu, R. Ward, Direct observation of magnetic exchange-spring development in epitaxial DyFe2/YFe2 superlattices by magneto-optical Kerr effect, Functional Materials Letters, Vol.8(5),1550053-1-4, 2015

36.K. Wang*,R. F. Chen, C. W. ChenR. C. Ward, Patterning effects on magnetic reversal properties in epitaxial-grown Laves phase DyFe2/YFe2 superlattice, Journal of Magnetism and Magnetic Materials, Vol. 377, 295297, 2015

37.K. Wang*,R. F. Chen, F. J. Zhuang, C. W. Chen, S. J. Su, Y. Xiang, Study of Triisopropylsilyl Pentacene thin film and its interfacial properties for device applications, Thin Solid Films, Vol. 584, 359-362, 2015

38.K. Wang*,Y. Qiu, Y. Huang, P. Heard, S. Bending, Investigation of temperature dependent magnetic properties in irradiated Co/Pt multilayer devices using Extraordinary Hall effect measurements, INTERMAG 2015, DOI: 10.1109/INTMAG.2015.7157634


三、博士、硕士招生专业


1.博士专业:核科学与技术082700

 招生方向:核技术及应用


2.硕士专业:电子科学与技术,电子信息

 招生方向:微电子学与固体电子学,磁电子与下一代量子材料