from    
to    
search  

 


【低维量子物理国家重点实验室杰出学者讲座】发现超导“分段费米面”
化学工程联合国家重点实验室(清华大学)学术论坛--电化学工程前沿及其分子和纳微尺...
天文系 Colloquium:Solar-like Oscillations: Past, Present, & Future
人工智能安全的一些探讨
报告题目:
ONE-DIMENSIONAL SEMICONDUCTING AND PIEZOELECTRIC NANOSTRUCTURES - SYNTHESIS, GROWTH MECHANISMS AND PROPERTIES
 报告人:
王中林 教授
School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta 30332-0245
报告时间:
2005-05-25 14:00
报告地点:
清华-富士康纳米科技研究中心四楼报告厅
主办单位:
清华-富士康纳米科技研究中心
  简介:

ONE-DIMENSIONAL SEMICONDUCTING AND PIEZOELECTRIC NANOSTRUCTURES - SYNTHESIS, GROWTH MECHANISMS AND PROPERTIES

Zhong Lin Wang

School of Materials Science and Engineering, Georgia Institute of Technology,  Atlanta 30332-0245

 

Nanowire and nanotube based materials have been demonstrated as building blocks for anocircuits, nanosystems and nano-optoelectronics. Quasi-one-dimensional nanostructures (so called nanobelts or nanoribbons) have been successfully synthesized for semiconducting oxides of zinc, tin, indium, cadmium and gallium, by simply evaporating the desired commercial metal oxide powders at high temperatures [1]. The belt-like morphology appears to be a unique and common structural characteristic for the family of semiconducting oxides with cations of different valence states and materials of distinct crystallographic structures. Using the technique demonstrated for measuring the mechanical properties of carbon nanotubes based on in-situ transmission electron microscopy [2,3], the bending modulus of the oxide nanobelts, the workfunction at the tip have been measured. Field effect transistors [4] and ultra-sensitive nano-size gas sensors [5], nanoresonators and nanocantilevers [6] have also been fabricated based on individual nanobelts. Thermal conductivity of a nanobelt has also been measured. Very recently, nanobelts, nanorings and nanosprings that exhibit piezoelectric properties have been synthesized, which are potential candidates for nano-scale traducers, actuators and sensors [7, 8, 9, 10]. This presentation will focus on our recent progress in the controlled growth, nano-scale property measurements and nano-size device fabrication using oxide nanostructures that are semiconducting and piezoelectric.

 

[1] Z.W. Pan, Z.R. Dai and Z.L. Wang, Science, 209 (2001) 1947.

[2] P. Poncharal, Z.L. Wang, D. Ugarte and W.A. de Heer, Science, 283 (1999) 1513; Electron Microscopy of Nanotubes, ed. Z.L. Wang and C. Hui, Kluwer Academic Publisher (2003).

[3] R.P. Gao, Z.L. Wang, Z.G. Bai, W. de Heer, L. Dai and M. Gao, Phys. Rev. Letts., 85 (2000) 622; Z.L. Wang, P. Poncharal and W.A. De Heer, Pure Appl. Chem. Vol. 72 (2000) 209.

[4] M. Arnold, P. Avouris, Z.L. Wang,. Phys. Chem. B, 107 (2002) 659.

[5] E. Comini, G. Faglia, G. Sberveglieri, Zhengwei Pan, Z. L. Wang Appl. Phys. Letts., 81 (2002) 1869.

[6] W. Hughes and Z.L. Wang, Appl. Phys. Letts., 82 (2003) 2886.

[7] X.Y. Kong and Z.L. Wang, Nano Letters, 2 (2003) 1625 + cover.

[8] Z.L. Wang, X.Y. Kong and J.M. Zuo, Phys. Rev. Letts. 91 (2003) 185502.

[9] " Nanowires and Nanobelts ? materials, properties and devices; Vol. I: Metal and Semiconductor Nanowires”, Vol. II: Nanowires and Nanobelts of Functional Materials” edited by Z.L. Wang, Kluwer Academic Publisher (2003).

[10] X.Y. Kong, Y. Ding, R.S. Yang, Z.L. Wang, Science, 303 (2004) 1348.

[11] For details: http://www.nanoscience.gatech.edu/zlwang/

  

 

今日相关信息
ONE-DIMENSIONAL NANOSTRUCTURES AS SUB...
 
同类别相关信息
Recent progress on method to study ...
The Global Star Formation Laws in S...
宇宙早期电弱相变和正反物质不对称的起源
东润丘成桐科学奖学术报告——物理
Competing orders/fluctuations in hi...
学术活动