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廖蕾

王朝百科·作者佚名  2010-04-29
窄屏简体版  字體: |||超大  

男,博士生; 1981 年 10 月出生 , 2004 年 6 月获得武汉大学物理本科学位,2004年开始做为武汉大学博士生攻读物理系博士学位,期间参加教育部访学计划赴中国科学院物理研究所学习两年,2007-2008年作为研究助理在新加坡南洋理工做访问研究。2004年获得湖北省优秀本科论文,2005年获得武汉大学安泰创新奖学金,2006年获得武汉大学珈玮奖学金,2007年获得全国宝钢优秀特等奖学金,2008年获得新加坡千禧奖。

近期的主要研究领域是一维 ZnO,过渡族氧化物以及碳纳米管等纳米结构、 掺杂、离子注入和电子场发射特性,及其它相关材料光学、磁学性质,气敏传感,晶体场效应管等研究。在国内外学术刊物上发表论文 20 多篇。

Publication list

1. L. Liao, Z. Zhang, Y. Yang, B. Yan, H. T. Cao, L. L. Chen, G. P. Li, T. Wu, Z. X. Shen, B. K. Tay, T. Yu, and X. W. Sun

Tunable transport properties of n-type ZnO nanowires by Ti plasma immersion ion implantation

Journal of Applied Physics (In press)

2. L. Liao, Z. Zheng, B. Yan, J. X. Zhang, H. Gong, J. C. Li, C. Liu, Z. X. Shen and T. Yu

Morphology Controllable Synthesis of a-Fe2O3 1D Nanostructures: Growth Mechanism and Nanodevice Based on Single Nanowire

Journal of Physical Chemistry C 112, 10784, (2008)

3. L. Liao, Q. Yuan, H. B. Lu, J. C. Li, C. Liu, C. H .Yan, Z. X. Shen and T. Yu

A single CeO2 nanowire gas sensor supported with Pt nanocrystals: gas sensitivity, surface bond states and chemical mechanism

Journal of Physical Chemistry C 112, 9061, (2008) Highlighted by Nature-Asia http://www.natureasia.com/asia-materials/highlight.php?id=236

4. L. Liao, H. B. Lu, M. Shuai, J. C. Li, Y. L. Liu, C. Liu, Z. X. Shen and T. Yu

A novel gas sensor based on field ionization from ZnO nanowires: moderate working voltage and high stability

Nanotechnology 19, 175501, (2008)

5. L. Liao, K. H. Liu, W. L. Wang, X. D. Bai, E. G. Wang, Y. L. Liu, J. C. Li and C. Liu

Multiwall BCN/C nanotube junction and its rectification behavior

Journal of the American Chemical Society 129 (2007) 9562

6. L. Liao, H. B. Lu, L. Zhang, M. Shuai, J. C. Li, C. Liu and D. J. Fu

Effect of ferromagnetic properties in Al doped ZnCoO nanowires synthesized by water-assistance reactive vapor desposition

Journal of Applied Physics 102, 114307, (2007)

7. L. Liao, H. B. Lu, J. C. Li, C. Liu, D. J. Fu, and Y. L. Liu

The sensitivity of gas sensor based on single ZnO nanowire modulated by helium ion radiation

Applied Physics Letters 91, 173110 (2007) “Selected in Virtual J. Nanoscale Science & Technology, number 5, 2007 issue".

8. L. Liao, W. F .Zhang, H. B. Lu, J. C. Li, D. F. Wang, C. Liu, and D. J. Fu

Investigation of the temperature dependence of the field emission of ZnO nanorods

Nanotechnology 18 (2007) 225703 “To put this into context, across all IOP journals 10%of articles were accessed over 250 times this quarter.”

9. L. Liao, Z. Xu, K. H. Liu, W. L. Wang, S. Liu, X. D. Bai, E. G. Wang, J. C. Li and C. Liu

Large-scale aligned silicon carbonitride nanotube arrays: synthesis, characterization, and field emission property

Journal of Applied Physics 101, 114306 (2007). “Selected in Virtual J. Nanoscale Science & Technology, June 18, 2007 issue".

10. L. Liao, J. C. Li, H. B. Lu, H. He, D. F. Wang, D. J. Fu and C. Liu

Size dependence of gas sensitivity of ZnO nanorods

Journal of Physical Chemistry C 111: 1900 2007

11. L. Liao, J. C. Li, C. Liu, Z. Xu, W. L. Wang, S. Liu, X. D. Bai and E. G. Wang

Field emission of GaN-filled carbon nanotubes: stable and high emission current

Journal of Nanoscience & Nanotechnology 7 (3): 1080 2007

12. L. Liao, J. C. Li, D. F. Wang, C. Liu, M. Z. Peng, J. M. Zhou

Size dependence of Curie temperature in Co+ ion implanted ZnO nanowires

Nanotechnology 17 (3): 830 2006 “To put this into context, across all IOP journals top 10% of articles were accessed over 250 times this quarter.”

13. L. Liao, J. C. Li, D.H. Liu, C. Liu, D. F. Wang, W. Z. Song, Q. Fu

Self-assembly of aligned ZnO nanoscrews: Growth, configuration, and field emission

Applied Physics letters 86 (8): 083106 2005 (Cover story)

14. L. Liao, D. H. Liu, J. C. Li, C. Liu, Q. Fu, M. S. Ye

Synthesis and Raman analysis of 1D-ZnO nanostructure via vapor phase growth

Applied surface science 240 (1-4): 175 2005

15. L. Liao, J. C. Li, D. F. Wang, C. Liu, C. S. Liu, Q. Fu, L. X. Fan

Field emission property improvement of ZnO nanowires coated with amorphous carbon and carbon nitride films

Nanotechnology 16 (6): 985 2005

16. L. Liao, J. C. Li, D. F. Wang, C. Liu, Q. Fu

Electron field emission studies on ZnO nanowires

Materials Letters 59 (19-20): 2465 2005

17. H. B. Lu, H. Li, L. Liao, J. C. Li, Y. Tian, M, Shuai, M. F. Hu and B. P. Zhu

Low-temperature synthesis and photocatalytic properties of ZnO nanotubes by thermal oxidation of Zn nanowires

Nanotechnology 19 (2008) 561

18. Y. L. Liu, L. Liao, C. X. Pan, J. C. Li, Y. Dai, W. Chem

Modulated structure assisted growth and properties of Fe3O4 nanoneedles film using thermal oxidation process in the air

Journal of Physical Chemistry C 112 (2008) 902

19. C. Li, G. J. Fang, N. S. Liu, J. Li, L. Liao, F. H. Su, G. H. Li, X. G. Wu, and X. Z. Zhao

Structural, Photoluminescence, and Field Emission Properties of Vertically Well-Aligned ZnO Nanorod Arrays

Journal of Physical Chemistry C 111, (2007) 12566

20. H. B. Lu, L. Liao, H. Li, J. C. Li, Y. Tian, D. F. Wang, and B. P. Zhu

Zn-assisted Synthesis and Photoluminescence Properties of MgO Nanotubes

Journal of Physical Chemistry C 111 (2007) 10273

21. Y. L. Liu, L. Liao, J. C. Li, C. X. Pan

From Copper Nanocrystalline to CuO Nanoneedle Array: Synthesis, Growth Mechanism and Properties

Journal of Physical Chemistry C 111: 5050 (2007)

22. H. B. Lu, L. Liao, J. C. Li, D. F. Wang, H. He, Q. Fu, L. Xu, Y. Tian

High-rated surface areas's ZnO microberets: low temperature synthesis, characterization and photoluminescence

Journal of Physical Chemistry B 110 (46): 23211 2006

23. K. H. Liu, W. L. Wang, Z. Xu, L. Liao, X. D. Bai, and E. G. Wang

In situ probing mechanical properties of individual tungsten oxide nanowires directly grown on tungsten STM tips inside TEM

Applied Physics letters 89, 221908 (2006)

24. C. J. Cong, L. Liao, Q. Y. Liu, J. C. Li, K. L. Zhang

Effects of temperature on the ferromagnetism of Mn-doped ZnO nanoparticles and Mn-related Raman vibration

Nanotechnology 17 (5): 1520 2006

25. C. J. Cong, L. Liao, J. C. Li, L. X. Fan, K. L. Zhang

Synthesis, structure and ferromagnetic properties of Mn-doped ZnO nanoparticles

Nanotechnology 16 (6): 981-984 JUN 2005

 
 
 
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