24小时热门版块排行榜    

查看: 1378  |  回复: 8
当前主题已经存档。
当前只显示满足指定条件的回帖,点击这里查看本话题的所有回帖

zhangwj

荣誉版主 (职业作家)

小木虫无限续航核潜艇

[交流] 【资源】WANG ZL 最新ZnO综述

Copyright © 2009 Elsevier B.V. All rights reserved.

ZnO nanowire and nanobelt platform for nanotechnology

Zhong Lin Wang, a,

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

Available online 9 March 2009.

Abstract
Semiconducting zinc oxide nanowires (NWs) and nanobelts (NBs) are a unique group of quasi-one-dimensional nanomaterial. This review mainly focuses on the rational synthesis, structure analysis, novel properties and unique applications of zinc oxide NWs and NBs in nanotechnology. First, we will discuss rational design of synthetic strategies and the synthesis of NWs via vapor phase and chemical growth approaches. Secondly, the vapor–solid process for synthesis of oxide based nanostructures will be described in details. We will illustrate the polar surface dominated growth phenomena, such as the formation of nanosprings, nanorings and nanohelices of single-crystal zinc oxide. Third, we will describe the unique and novel electrical, optoelectronic, field emission, and mechanical properties of individual NWs and NBs. Finally, we will illustrate some novel devices and applications made using NWs as ultra-sensitive chemical and biological nanosensors, solar cell, light emitting diodes, nanogenerators, and nano-piezotronic devices. ZnO is ideal for nanogenerators for converting nano-scale mechanical energy into electricity owing to its coupled piezoelectric and semiconductive properties. The devices designed based on this coupled characteristic are the family of piezotronics, which is a new and unique group of electronic components that are controlled by external forces/pressure.

Keywords:
ZnO; Nanowire; Nanobelts; Nanospring; Nanoring; Nanogenerator; Nanopiezotronics; Nanosensor; Nanolaser; LED; Solar cell

Article Outline

1. Introduction
2. Crystal structure of ZnO
3. Synthesis of aligned nanowires
3.1. Vapor–liquid–solid growth and vapor–solid–solid growth
3.2. Hydrothermal based chemical approach
3.2.1. Method
3.2.2. Patterned growth of vertically aligned nanowire array
3.2.3. Patterned growth of laterally aligned nanowire array
3.2.4. Competitive lateral and vertical growth
4. Nanobelts and polar surface induced novel growth configurations
4.1. Vapor–solid synthesis of nanobelts
4.2. Nanospirals and nanosprings
4.3. Seamless nanorings
4.4. Superlattice structured nanohelix
4.5. Deformation-free nanohelix
4.6. Self-catalyzed growth structures
5. Fundamental properties of nanowires and nanobelts
5.1. Mechanical properties of nanobelts and nanowires
5.1.1. In situ resonance of a nanobelt
5.1.2. Mechanical behavior of aligned nanowire array
5.1.3. Mechanical properties of a bridged nanobelt
5.1.4. Elastic property of a nanohelix
5.1.5. Super-elasticity of a nanohelix
5.2. Field emission properties
5.3. Optical property
5.3.1. Photoluminescence
5.3.2. Nanolaser
5.3.3. Light emitting diode
5.3.4. Dye-sensitized solar cell
5.4. Nanosensors
5.4.1. UV sensors
5.4.2. Gas sensors
5.5. Piezoelectric properties
5.6. Nanogenerators
5.6.1. Physical principle: n-type ZnO nanowire
5.6.2. Physical principle: p-type ZnO nanowire
5.6.3. Direct-current nanogenerator driven by ultrasonic wave
5.6.4. Criteria and tests for ruling out artifacts
5.6.5. Fiber based nanogenerators
5.6.6. Nanogenerator using laterally packaged nanowires
5.6.7. Muscle/movement driven nanogenerator
5.7. Nano-piezotronics
5.7.1. Piezoelectric field effect transistors
5.7.2. Piezoelectric diode
5.7.3. Polarity switchable piezoelectric diode
6. Biodegradability and biosafety
7. Summary
Acknowledgements
References

Link1:
http://www.sciencedirect.com/sci ... ebf4857aa2e53a25fab

Link2:
http://www.namipan.com/d/f42b3eb ... 14b3a8a8ad593efc300
回复此楼
谢谢支持材料区@小木虫论坛
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

eroszhyx

木虫 (著名写手)

ding
3Q very much

8楼2009-03-17 11:43:02
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
查看全部 9 个回答
普通表情 高级回复 (可上传附件)
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[考研] 售SCI文章,我:8O5.5.1.O.54,科目齐全,可+急 +4 40ms4Wlo4umh 2026-09-14 4/200 2026-09-16 06:36 by LH5NkK5Ud4bh
[考研] 售SCI一区T0P文章,我:8O.55.1.O.54,科目全,可伽急 +3 23jxep3nCNZb 2026-09-14 3/150 2026-09-16 05:51 by LH5NkK5Ud4bh
[博后之家] 售SCI一区文章,我:8O5.5.1.O5.4,科目全,可伽急 +3 6F5UbRU2I5hL 2026-09-14 3/150 2026-09-16 05:35 by LH5NkK5Ud4bh
[找工作] 售SCI一区文章,我:8.O.551.O.5.4,科目全,可伽急 +3 6F5UbRU2I5hL 2026-09-14 3/150 2026-09-16 05:15 by LH5NkK5Ud4bh
[考研] 售SCI一区T0P文章,我:8.O.55.1.O.5.4,科目全,可+急 +3 s3fFTmArrBt6 2026-09-14 3/150 2026-09-16 04:23 by DgNGHc3h5tPl
[公派出国] 售SCI文章,我:8O.5.5.1O.54,科目全,可十急 +4 s3fFTmArrBt6 2026-09-13 6/300 2026-09-16 03:35 by DgNGHc3h5tPl
[考博] 售SCI一区T0P文章,我:8O.55.1.O.5.4,科目齐全,可+急 +5 3n8v2C8RimXI 2026-09-13 5/250 2026-09-16 02:50 by DgNGHc3h5tPl
[找工作] 售一区SCI文章T0P,我:8O.551.O54,科目全,可十急 +3 3n8v2C8RimXI 2026-09-13 3/150 2026-09-16 02:38 by DgNGHc3h5tPl
[博后之家] 售SCI一区T0P文章,我:8.O.55.1.O.5.4,科目全,可+急 +3 Aj1rhIDL5ixY 2026-09-14 3/150 2026-09-15 20:26 by zNcEhTcH7ihq
[博后之家] 售SCI一区T0P文章,我:8O.55.1.O.54,科目全,可伽急 +3 40ms4Wlo4umh 2026-09-14 3/150 2026-09-15 19:23 by CgyNCDVNhGVg
[博后之家] 售SCI文章,我:8O5.5.1.O.54,科目齐全,可+急 +3 s3fFTmArrBt6 2026-09-14 5/250 2026-09-15 16:50 by CgyNCDVNhGVg
[硕博家园] 售SCI一区T0P文章,我:8.O55.1.O.54,科目全,可十急 +5 s3fFTmArrBt6 2026-09-14 5/250 2026-09-15 16:35 by CgyNCDVNhGVg
[考研] 售SCI一区文章,我:8.O.551.O.5.4,科目全,可伽急 +6 QUjhNVAcOSff 2026-09-13 7/350 2026-09-15 14:22 by VMDqgnlKimtZ
[公派出国] 售SCI一区T0P文章,我:8.O55.1.O.54,科目全,可十急 +7 QUjhNVAcOSff 2026-09-13 9/450 2026-09-15 14:10 by VMDqgnlKimtZ
[公派出国] 售SCI文章,我:8O5.5.1.O.54,科目齐全,可+急 +3 6F5UbRU2I5hL 2026-09-14 3/150 2026-09-15 08:58 by C79jjtjAKjEn
[教师之家] 售SCI一区文章,我:8.O.551.O.5.4,科目全,可伽急 +4 s3fFTmArrBt6 2026-09-13 4/200 2026-09-15 07:02 by 5BDX0d0WFp7t
[教师之家] 售SCI一区文章,我:8.O.55.1.O.54,科目齐全,可伽急 +4 s3fFTmArrBt6 2026-09-13 4/200 2026-09-15 06:50 by 5BDX0d0WFp7t
[考研] 售SCI一区T0P文章,我:8.O.55.1.O.5.4,科目全,可+急 +3 s3fFTmArrBt6 2026-09-13 5/250 2026-09-15 06:49 by 5BDX0d0WFp7t
[博后之家] 售SCI一区T0P文章,我:8.O55.1.O.54,科目全,可十急 +6 3n8v2C8RimXI 2026-09-13 6/300 2026-09-15 05:50 by 5BDX0d0WFp7t
[基金申请] 求教各位大神:2026教育部人文社科青年基金项目何时公示呀? +5 云宴山人 2026-09-10 7/350 2026-09-14 12:11 by ecnu2013
信息提示
请填处理意见