淡江大學機構典藏:Item 987654321/93965
English  |  正體中文  |  简体中文  |  全文笔数/总笔数 : 62805/95882 (66%)
造访人次 : 3914743      在线人数 : 854
RC Version 7.0 © Powered By DSPACE, MIT. Enhanced by NTU Library & TKU Library IR team.
搜寻范围 查询小技巧:
  • 您可在西文检索词汇前后加上"双引号",以获取较精准的检索结果
  • 若欲以作者姓名搜寻,建议至进阶搜寻限定作者字段,可获得较完整数据
  • 进阶搜寻


    jsp.display-item.identifier=請使用永久網址來引用或連結此文件: https://tkuir.lib.tku.edu.tw/dspace/handle/987654321/93965


    题名: 研究藉由增加奈米材料表面的氧空缺結構以大幅提升奈米線感測元件的感測能力
    其它题名: Gigantic enhancement in sensing ability of nanowire sensor by increasing the oxygen vacancy amounts
    作者: 王玟捷;Wang, Wen-Chieh
    贡献者: 淡江大學物理學系碩士班
    葉炳宏;Yeh, Ping-Hung
    关键词: 二氧化錫;奈米線;氧空缺;奈米元件;蕭特基接觸;蕭特基能障;紫外光感測器;氣體感測器;Tin Dioxide;nanowire;Oxygen vacancy;Nano device;Schottky contact;Schottky barrier;UV sensor;gas sensor
    日期: 2013
    上传时间: 2014-01-23 13:44:21 (UTC+8)
    摘要: 近年來,有許多研究團隊已證實金屬氧化物奈米材料的導電性與其表面之氧空缺結構有關,本研究利用兩端擁有不同氧空缺數量的SnO2-X/SnO2奈米線為基礎,比較奈米線兩端之蕭特基接觸元件的感測能力。在紫外光感測部分,兩元件於不同濃度氧氣環境中之感測靈敏度及蕭特基能障高度調控能力,SnO2-X均遠優於SnO2,隨著氧氣濃度升高,變化幅度較劇烈,回復時間也較為快速。氣體感測方面,SnO2-X對氧氣及一氧化碳氣體週期性感測靈敏度亦遠優於SnO2,在不同感測溫度及不同一氧化碳氣體濃度環境中,反應時間及回復時間也較為快速。本研究證明了氧空缺數量較多之SnO2-X擁有較優越之感測能力,此結果進而提供了一個增進奈米感測元件感測能力的方法。
    Recently, there are many metal-oxide-based nano materials have been studied, most article indicated that the conductivity of the metal-oxide nano materials due to oxygen vacancies. In this research work, the SnO2-X and SnO2 nanostructures have been used to study the detection ability. The sensing abilities of metal-oxide-based nanosensors will be affected by the oxygen vacancy amounts of nanowire surface. In UV sensing, compared to the sensing abilities of SnO2 schottky contacted devices, the SnO2-X schottky contacted devices improved the sensitivity in different O2 concentration environment. The sensitivity and schottky barrier height variation with the increasement of O2 concentration of SnO2-X are much larger than SnO2, and the reset time is also faster. In gas sensing, the sensitivity of SnO2-X schottky contacted devices is better than SnO2 in different measurement temperature and different CO concentration. The response and reset time are faster, either. This result indicated that the sensing abilities can be gigantically enhanced by increasing the oxygen vacancy amounts. This research work provides a potential method for enhancing the detection ability of nanosensors.
    显示于类别:[物理學系暨研究所] 學位論文

    文件中的档案:

    档案 大小格式浏览次数
    index.html0KbHTML313检视/开启

    在機構典藏中所有的数据项都受到原著作权保护.

    TAIR相关文章

    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library & TKU Library IR teams. Copyright ©   - 回馈