标题: 以奈米孔阳极氧化铝(AAO)版模法制作电子场发射奈米结构材料
Fabrication of Nanostructure Field-Emitters Using Nanoporous Anodic Aluminum Oxide (AAO) as the Template
作者: 潘扶民
PAN FU-MING
国立交通大学材料科学与工程学系(所)
关键字: 阳极氧化铝;奈米碳管;场发射源;矽奈米尖锥;氧化铱;非晶质碳;Anodic aluminum oxide;AAO;carbon nanotube;field emitter;IrO2;Si nanocone;?-carbon.
公开日期: 2008
摘要: 我们拟以自组装阳极氧化铝(anodic aluminum oxide, AAO)奈米孔道阵列作为版模,制作
奈米碳管与奈米尖锥等奈米结构材料,藉以研究奈米碳管等奈米结构材料在AAO 中的
生长特性,并开发AAO 版模技术做为奈米材料结构之制作平台。我们将利用以AAO
版模翻印成长的奈米结构材料阵列做为场发射源,研究不同奈米结构的电子场发射特
性,并结合IC 制程技术将AAO 孔道阵列制作于三极体结构中,探讨其应用于场发射显
示技术的可行性。依奈米材料种类与制程结构,我们将研究项目分为(一) 整合AAO 于
场发射三极体(triode)结构内,建立以AAO 版模制作奈米结构电子场发射材料的技术平
台,奈米碳管将是首要的研究对像;(二)在AAO-Triode 成长高品质的CNT 场发射源,
我们将进行CNT 发射源表面污染与AAO 基部-CNT 界面特性研究,藉以改善CNT 的制
程条件,成长高品质的CNT 场发射源;(三)以AAO 版模制作矽奈米尖锥场发射源,并
于其表面沉积高稳定性、低功函数的IrO2 与脉-C 薄膜,探讨改质后Si 奈米尖锥场发射
特性。
In this proposal, we plan to fabricate carbon nanotubes (CNT) and silicon nanocones in
terms of anodic aluminum oxide (AAO) templation method. The growth of these
nanostructured materials in the highly ordered pore channels of the AAO will be studied, and
we shall try to develop a fabrication platform for nanostructured field emission materials by
usingAAO as the template. Electron field emission characteristics of these nanostructured
materials grown in the AAO will be studied, and the feasibility using these materials as the
field emitters in a triode structure for the application of field emission display technology
will be evaluated. The research work is divided into four subjects: (1) Integration of AAO
pore channel array into the triode structure will be first implemented for CNT field emitters
to evaluate the feasibility of the fabrication platform for nanostructured field emitter
materials; (2) To study of surface contamination on the AAO-CNT array and interface
properties between the CNT and the pore bottom of the AAO template so that CNT field
emitter of better quality can be grown in the AAO; (3) Si nanocones will be fabricated by
using TiOx nanodots as the hardmask, which are produced byAAO templation, and
脉-carbon or IrO2 will be deposited on the nanocone surface to improve the field emission
characteristics of the Si nanocones.
官方说明文件#: NSC96-2221-E009-109-MY3
URI: http://hdl.handle.net/11536/102101
https://www.grb.gov.tw/search/planDetail?id=1588914&docId=272370
显示于类别:Research Plans