标题: | 奈米碳管、氧化锌奈米线及其相关元件之特性及应用研究 Characterizations and Applications of Carbon Nanotubes, Zinc Oxide Nanowires and Related Devices |
作者: | 李佳颖 Chia Ying Lee 曾俊元 Tseung Yuen Tseng 电子研究所 |
关键字: | 奈米碳管;超电容;氧化锌奈米线;场发射元件;carbon nanotubes;supercapacitor;ZnO nanwires;field emission device |
公开日期: | 2005 |
摘要: | 本论文中将针对氧化锌奈米线的研制、材料特性鉴别、元件制备、光学与电学等的特性研究,做一完整而详细的分析与研究,期能寻求出一稳定的奈米储能、光电元件应用制程。利用奈米碳管的高比表面积配合氧化锰制备之超电容复合式电极可有效的提升其电容特性;经过成长于可挠式高分子基版,镁离子添加控制其直接能隙,利用磷离子改变其导电性质,光学激发特性分析以及场发射性质的研究,可以对现阶段的氧化锌一维奈米结构的成长机制与结晶过程给予一个较为明确的探讨,同时也针对未来的储能与场发射平面显示元件的基础性研究提供了清楚的模型,运用其特异奈米结构微型化的相辅相成而早日达到实际应用的领域。 Characterizations and applications of carbon nanotubes (CNTs), zinc oxide nanowires (ZnO NWs) and related devices were discussed in this study. The MnOx-CNTs composite supercapacitor electrode exhibits good capacitor abilities for the high active area of carbon nanotubes. ZnO NWs were synthesized on the flexible polymer substrate by hydrothermal method, the band gap of zinc oxide nanowires was modulated by the dopant of magnesium, and the field emission ability was enhanced by the phosphorus incorporation. The growth mechanism, optical and electric characterizations were also carrying out in this study. The present study provides a new fabrication of energy storage device and a simple process to synthesize the field emission devices based on low temperature synthesized ZnO NWs. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009211802 http://hdl.handle.net/11536/67767 |
显示于类别: | Thesis |
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