祁媚

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职称:讲师

个人简介:

主要研究领域:二维纳米材料、太赫兹光谱、光电应用。

教育经历:

2011.092017.07      西北大学          光学                博士

2015.112016.11      芬兰阿尔托大学    光学                联合培养

2015.042015.07      芬兰阿尔托大学    光学                短期访学

2007.092011.07      西北大学          光信息科学与技术    本科

邮箱:qm@nwu.edu.cn

科研成果:

1. Qi M, Zhou Y, Huang Y, et al. Interface-induced terahertz persistent photoconductance in rGO-gelatin flexible films[J]. Nanoscale, 2017, 9(2): 637-646. (SCI 1 区,IF 7.76)

2. Qi, M.; Zhou, Y.; Hu, F.; Xu, X.; Li, W.; Li, A.; Bai, J.; Ren, Z., Improving Terahertz Sheet Conductivity of Graphene Films Synthesized by Atmospheric Pressure Chemical Vapor Deposition with Acetylene. The Journal of Physical Chemistry C, 2014, 118, 15054-15060. SCI 2 区,IF 4.8

3. Qi, M.; Ren, Z.; Jiao, Y.; Zhou, Y.; Xu, X.; Li, W.; Li, J.; Zheng, X.; Bai, J., Hydrogen Kinetics on Scalable Graphene Growth by Atmospheric Pressure Chemical Vapor Deposition with Acetylene. The Journal of Physical Chemistry C, 2013, 117, 14348-14353. SCI 2 区,IF 4.8

4. Qi, M.; Zhang, Y. P.; Li, W. L.; Jiang, M.; Zheng, X. L.; Bai, J. T.; Ren, Z. Y. In Synthesis of High Quality Graphene Films by Atmospheric Pressure CVD and Their Application in Laser Q-Switching, Specialized Collections, Trans Tech Publ: 2015, pp 2376-2379.会议论文

5. Li D, Xue H, Qi M, et al. Graphene actively Q-switched lasers[J]. 2D Materials, 2017, 4(2): 025095. SCI 1区, IF 9.6

6. Zhou, Y.; Yiwen, E.; Zhu, L.; Qi, M.; Xu, X.; Bai, J.; Ren, Z.; Wang, L., Terahertz Wave Reflection Impedance Matching Properties of Graphene Layers at Oblique Incidence. Carbon, 2016, 96, 1129-1137.

7. Zhou, Y.; Xu, X.; Fan, H.; Qi, M.; Li, J.; Bai, J.; Ren, Z., Graphene: Manipulate Terahertz Waves. Graphene Optoelectronics, 2014, 209-234.

8. Shi, R.; Bai, Y.; Qi, M.; Chen, X.; Wei, H.; Ren, Z.; Bai, J., A Passively Mode-Locked Intracavity Frequency Doubled Nd: Yvo4 Femtosecond Green Laser Based on Graphene. Laser Physics Letters, 2013, 11, 025001.

9. Bai, Y.; Qi, M.; Wang, S.; Shi, R.; Li, D.; Ren, Z.; Bai, J., Cw Mode-Locked 1.908 m Tm:LiYF4 Slab Laser Based on an Output-Coupling Graphene Saturable Absorber Mirror. Applied Physics Express, 2013, 6, 102701.

10. Jin, C.; Chen, X.; Li, L.; Qi, M.; Bai, Y.; Ren, Z.; Bai, J., A Graphene-Based Passively Q-Switched Ho: Yag Laser in-Band Pumped by a Diode-Pumped Tm: YLF Solid-State Laser. Laser Physics, 2014, 24, 035801.

11. Li, J.; Ren, Z.; Zhou, Y.; Wu, X.; Xu, X.; Qi, M.; Li, W.; Bai, J.; Wang, L., Scalable Synthesis of Pyrrolic N-Doped Graphene by Atmospheric Pressure Chemical Vapor Deposition and Its Terahertz Response. Carbon, 2013, 62, 330-336.

12. Li, J.; Zhou, Y.; Quan, B.; Pan, X.; Xu, X.; Ren, Z.; Hu, F.; Fan, H.; Qi, M.; Bai, J., Graphene–Metamaterial Hybridization for Enhanced Terahertz Response. Carbon, 2014, 78, 102-112.

13.   Li, L.; Ren, Z.; Chen, X.; Qi, M.; Zheng, X.; Bai, J.; Sun, Z., Passively Mode-Locked Radially Polarized Nd-Doped Yttrium Aluminum Garnet Laser Based on Graphene-Based Saturable Absorber. Applied Physics Express, 2013, 6, 082701.

14.   Li, L.; Zheng, X.; Jin, C.; Qi, M.; Chen, X.; Ren, Z.; Bai, J.; Sun, Z., High Repetition Rate Q-Switched Radially Polarized Laser with a Graphene-Based Output Coupler. Applied Physics Letters, 2014, 105, 221103.




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