访问学者,2019.10--2020.10,物理系,安特卫普大学
博士研究生,2010.09--2014.07,凝聚态物理,香港城市大学
博士研究生,2009.09--2014.05,凝聚态物理,中国科学技术大学
1. 二维电子器件:MOS器件,自旋电子器件
2. 天线阵列/柔性电子/射频识别技术/无线传感技术/可穿戴设备。
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王晶职称:副教授 毕业院校:中国科学技术大学 邮件:wangjing@hdu.edu.cn 办公地点: 职务: 研究方向: 二维材料物理特性/二维电子器件/天线阵列/柔性电子/射频识别技术/无线传感技术/可穿戴设备 |
个人简介
教育经历
工作经历
社会职务
研究领域
1. 二维电子器件:MOS器件,自旋电子器件 2. 天线阵列/柔性电子/射频识别技术/无线传感技术/可穿戴设备。
教学与课程
横向科研
纵向科研
论文
1. Jing Wang, Wen-Sheng Zhao, Yue Hu, R. N. Costa Fiho and Francois M. Peeters, Charged vacancy in graphene: Interplay between Landau levels and atomic collapse resonances. Physical Review B 105, 035427, 2024. (SCI IF=4.036, Google Scholar Citation=0). 2. Jing Wang, R. Van Pottelberge, Wen-Sheng Zhao and Francois M. Peeters, Coulomb impurity on a Dice lattice: Atomic collapse and bound states. Physical Review B 105, 035427, 2022. (SCI IF=4.036, Google Scholar Citation=1) 3. Yihao Ma, Lianghao Ruan, Jing Wang*, Wen-Sheng Zhao, Yue Hu, Yuhua Cheng, Da-Wei Wang and Gaofeng Wang, Spatial Selected spin filtering effect in Z-shaped MoS2 nanoribbon, IEEE Access, 3100351, 2021. (SCI IF=3.367, Google Scholar Citation=0) 4. Jing Wang, Robbe Van Pottelberge, Amber Jacobs and Francois M. Peeters, Confinement and edge effects on atomic collapse in graphene nanoribbons. Physical Review B 103, 035426, 2021. (SCI IF=4.036, Google Scholar Citation=1) 5. Jing Wang, Misa Andelkovic, Gaofeng Wang and Francois M. Petterss, Molecular collapse in graphene: sublattice symmetry effect. Physical Review B 102, 064108, 2020. (SCI IF=4.036, Google Scholar Citation=1) 6. Jing Wang, Haorui Lu, Yue Hu, Wen Sheng-Zhao, Gaofeng Wang and K S Chan, Quantum pumping of layer pseudospin current in biased bilayer graphene. Journal of Physics D: Applied Physics 50, 205101, 2017. ( SCI IF=2.578, Google Scholar Citation=1) 7. Jing Wang, Menqiu Long, Wen-Sheng Zhao, Yue Hu, Gaofeng Wang and K S Chan, A valley and spin filter based on gapped graphene. Journal of Physics: Condensed Matter 28, 285302, 2016. (SCI IF=2.617, Google Scholar Citation=6) 8. Jing Wang and K S Chan, Generation of valley polarized current in graphene using quantum adiabatic pumping. Advances in Nano Research, Vol. 3, No.1 39-47 ,2015. ( SCI IF=2.333) 9. Jing Wang, Zijing Lin and K S Chan, Pure valley current in graphene with a Dirac gap by quantum pumping. Applied Physics Express 7, 125102, 2014. (SCI IF=2.555, Google Scholar Citation=10) 10. Jing Wang, Zijing Lin and K S Chan, Nano-position sensing using graphene nanoribbons. Journal of Physics: Condensed Matter 26 ,135301, 2014. (SCI IF=2.617, Google Scholar Citation=1) 11. Jing Wang, K S Chan and Zijing Lin, Quantum pumping of valley current in strain engineered graphene. Applied Physics Letters 104, 013105, 2014. (SCI IF=3.495, Google Scholar Citation=37)
著作
专利成果
荣誉及奖励
软件成果
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