副教授
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刘逆霜
发布时间:2016-01-05

 

      刘逆霜,男,1984年出生。2002.09-2006.06于武汉大学物理学院获电子科学与技术专业学士学位,2006.09-2011.12于武汉大学物理学院获微电子与固体电子学博士学位,2011年12月起为华中科技大学物理学院教师。多年来,一直在从事低维功能材料的制备、调控、新颖性质和器件方面研究,在有关材料可控合成、表征、性能测试和相关器件设计以及超净室微加工等方面积累了较丰富的经验。近年来,在功能纳米材料的器件制备及性能测试方面(主要包括超级电容器、光电及机电传感器),以第一作者或通讯作者身份在包括Advanced Materials、Applied Physics Letters、Scientific Reports、Nanoscale、Optics Express、ACS Applied Materials & Interfaces、Journal of Materials Chemistry A及Journal of Physical Chemistry C等学术期刊上发表论文二十余篇。申请中国发明专利3项,其中2项已获授权。并担任Nanotechnology、Journal of Physical Chemistry C、ACS Applied Materials & Interfaces、IEEE Electron Device Letters、RSC Advances、Journal of Physics D: Applied Physics和Semiconductor Science &Technology等学术期刊的特邀审稿人。

 

电子邮箱:nishuang_liu@foxmail.com

 

相关代表性论文:

1. N. S. Liu, W. Z. Ma, J. Y. Tao, X. H. Zhang, J. Su, L. Y. Li, C. X. Yang, Y. H. Gao, D. Golberg, Y. Bando, Cable-Type Supercapacitors of Three-Dimensional Cotton Thread Based Multi-Grade Nanostructures for Wearable Energy Storage, Advanced Materials, 2013, 25, 4925.

2. N. S. Liu *(通讯作者), J. Li, W. Z. Ma, W. J. Liu, Y. L. Shi, J. Y. Tao, X. H. Zhang, J. Su, L. Y. Li, Y. H. Gao*, Ultrathin and Lightweight 3D Free-Standing Ni@NiO Nanowire Membrane Electrode for a Supercapacitor with Excellent Capacitance Retention at High Rates, ACS Applied Materials & Interfaces, 2014, 6, 13627.

3 W. J. Liu, N. S. Liu *(通讯作者), Y. L. Shi, Y. Chen, C. X. Yang, J. Y. Tao, S. L. Wang, Y. M. Wang, J. Su, L. Y. Li and Y. H. Gao*, Wire-shaped flexible asymmetric supercapacitor based on carbon fiber coated with a metal oxide and a polymer. Journal of Materials Chemistry A, 2015, 3, 13461.

4. J. Y. Tao, N. S. Liu *(通讯作者), J. Y. Rao, L. W. Ding, M. R. Al-bahrani, L. Y. Li, J. Su, Y. H. Gao*, Series Asymmetric Supercapacitors Based on Free-standing Inner-Connection Electrodes for High Energy Density and High Output Voltage, Nanoscale, 2014, 6, 15073.

5. J. Y. Tao, N. S. Liu *(通讯作者), W. Z. Ma, L. W. Ding, L. Y. Li, J. Su, Y. H. Gao, Solid-State High Performance Flexible Supercapacitors Based on Polypyrrole-MnO2-Carbon Fiber Hybrid Structure, Scientific Reports, 2013, 3, 2286.

6. J. Y. Tao, N. S. Liu *(通讯作者), L. Y. Li, J. Su, Y. H. Gao, Hierarchical nanostructures of polypyrrole@MnO2 composite electrodes for high performance solid-state asymmetric supercapacitors, Nanoscale, 2014, 6, 2922.

7. H. X. Li, Zhang, X. H. Zhang, N. S. Liu *(通讯作者), L. W. Ding, Tao, J. Y. Tao, S. L. Wang, J. Su, L. Y. Li, Y. H. Gao, Enhanced photo-response properties of a single ZnO microwire photodetector by coupling effect between localized Schottky barriers and piezoelectric potential, Optics Express, 2015, 23, 21204.

8. N. S. Liu, W. W. Tian, X. H. Zhang, J. Su, Q. Zhang, Y. H. Gao, Enhancement of ultraviolet detecting by coupling the photoconductive behavior of GaN nanowires and p-n junction, Optics Express, 2012, 20, 20748-20753.

9. N. S. Liu, G. J. Fang, W. Zeng, H. Long, L. Yuan, X. Z. Zhao, Diminish the screen effect in field emission via patterned and selective edge growth of ZnO nanorod arrays, Applied Physics Letters, 2009, 95, 153505. (IF: 3.794)

10. N. S. Liu, G. J. Fang, W. Zeng, H. Long, X. Zou, Y. P. Liu, X. Z. Zhao, High Performance ZnO Nanorod Strain Driving Transistor Based Piezoelectric CMOS Logic Gates, Applied Physics Letters, 2010, 97, 243504.

11. N. S. Liu, G. J. Fang, J. W. Wan, H. Zhou, H. Long, X. Z. Zhao, Electrospun PEDOT:PSS–PVA nanofiber based ultrahigh-strain sensors with controllable electrical conductivity, Journal of Materials Chemistry, 2011, 21, 18962.

12. N. S. Liu, G. J. Fang, W. Zeng, H, Zhou, H. Long, X. Z. Zhao, Enhanced field emission from three-dimensional patterned carbon nanotube arrays grown on flexible carbon cloth, Journal of Materials Chemistry, 2012, 22, 3478.

13. N. S. Liu, G. J. Fang, W. Zeng, H. Zhou, F. Cheng, Q. Zheng, L. Yuan, X. Zou, X. Z. Zhao, Direct Growth of Lateral ZnO Nanorod UV Photodetectors with Schottky Contact by a Single-Step Hydrothermal Reaction, ACS Applied Materials & Interfaces, 2010, 2, 1973.

14. N. S. Liu, G. J. Fang, W. Zeng, H. Long, L. Yuan, X. Z. Zhao, Novel ZnO Nanorod Flexible Strain Sensor and Strain Driving Transistor with an Ultra High 107 Scale “on”-“off” Ratio, Journal of Physical Chemistry C, 2011, 115, 570.

15. N. S. Liu, G. J. Fang, W. Zeng, H. Long, X. Fan, L. Yuan, X. Zou, Y. P. Liu, X. Z. Zhao, Strong Effect of Interelectrode Distance on the Performance of a Novel ZnO Nanorod Lateral Field Emission Device Fabricated by a Single-Step Hydrothermal Approach, Journal of Physical Chemistry C, 2010, 114, 8575.

16. N. S. Liu, G. J. Fang, W. Zeng, H. Long, X. Z. Zhao, Giant Enhancement of Field Emission from Selectively Edge Grown ZnO–Carbon Nanotube Heterostructure Arrays via Diminishing the Screen Effect, Journal of Physical Chemistry C, 2011, 115, 14377.

17. N. S. Liu, G. J. Fang, X. X. Yang, W. Zeng, C. Li, M. J. Wang, J. Li, X. Z. Zhao, Synthesis of patterned carbon nanotube arrays for field emission using a two layer Sn/Ni catalyst in an ethanol flame, Diamond & Related Materials, 2009, 18, 1375.

18. S. L. Wang, N. S. Liu *(通讯作者), J. Y. Tao, C. X. Yang, W. J. Liu, Y. L. Shi, Y. M. Wang, J. Su, L. Y. Li and Y. H. Gao*, Inkjet Printing of Conductive Patterns and Supercapacitors Using Multi-Walled Carbon Nanotubes/Ag Nanoparticles Based Ink, Journal of Materials Chemistry A, 2015, 3, 2407.

19. C. X. Yang, Y. L. Shi, N. S. Liu *(通讯作者), J. Y. Tao, S. L. Wang, W. J. Liu, Y. M. Wang, J. Su, L. Y. Li and Y. H. Gao*, Freestanding and flexible graphene wrapped MnO2/MoO3 nanoparticle based asymmetric supercapacitors for high energy density and output voltage, RSC Advances, 2015, 5, 45129.

20. S. L. Wang, N. S. Liu *(通讯作者), C. X. Yang, W. J. Liu, , J. Su, L. Y. Li, C. P. Yang and Y. H. Gao*, Fully screen printed highly conductive electrodes on various flexible substrates for asymmetric supercapacitors, RSC Advances, 2015, 5, 85799.

21. L. W. Ding#, N. S. Liu#(共同第一作者), L. Y. Li#, X. Wei, X. H. Zhang, J. Su, J. Y. Rao, C. X. Yang, W. Z. Li, J. B. Wang, H. S. Gu and Y. H. Gao*, Graphene-Skeleton Heat-Coordinated and Nanoamorphous-Surface-State Controlled Pseudo-Negative-Photoconductivity of Tiny SnO2 Nanoparticles, Advanced Materials, 2015, 27, 3525.

 

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