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dc.contributor.author陈建翔en_US
dc.contributor.authorChien-Hsiang Chenen_US
dc.contributor.author简纹滨en_US
dc.contributor.authorWen-Bin Jianen_US
dc.date.accessioned2014-12-12T01:16:45Z-
dc.date.available2014-12-12T01:16:45Z-
dc.date.issued2007en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#GT009521525en_US
dc.identifier.urihttp://hdl.handle.net/11536/38830-
dc.description.abstract我们制作了一系列聚苯胺掺杂氯化氢(PANI/HCl)之奈米纤维元件,并进行两点电性量测与分析。实验结果显示元件导电特性将由PANI/HCl奈米纤维本质与接面效应彼此竞争与贡献;我们并以SEM电子束照射元件PANI/HCl奈米纤维与电极之接触面,发现能有效降低接触电阻,即随着照射时间增加,将使元件导电特性受接面效应之影响变小而导向由PANI/HCl奈米纤维本质所主宰。
实验上亦观察到元件于变温范围内,其电阻皆随着温度下降而上升,即负温度系数(dR/dT<0)之关系,故系统呈现半导体之特性。我们亦成功地以变程跳跃电导拟合元件电阻对温度之关系且对应之p值约落在p=1-10之范围,故元件导电特性可视为于无序系统下之传输行为,即载子将在局域态间经由和声子之热激发作用以达到其传输机制;此外,若元件室温电阻落在MΩ等级时,元件导电特性将几乎由PANI/HCl奈米纤维本质所主宰,对应其p值约在p=1-3之范围左右,即可视为准一维之系统,而随着室温电阻大于MΩ等级时,接面效应对元件电性之影响将越趋显着,对应其p值约在p=3以上,且室温电阻越大,p值整体有无规之变化。
zh_TW
dc.description.abstractWe present temperature dependent current-voltage behaviors of doped-PANI/HCl nanofiber devices with a two-probe configuration. The contribution of electrical transport result not only from the intrinsic PANI/HCl nanofibers but also from the contact. In order to reduce the contact resistance so as to obtain the intrinsic electrical property of the PANI/HCl nanofibers, the contacts of our nanofiber devices were exposed to the electron beam in the scanning electron microscope.
The temperature dependent resistance of our PANI/HCl nanofiber devices reveal a negative temperature dependence (dρ/dT <0) and display semiconducting behaviors. The resistance can be fitted well with the variable range hopping (VRH) model, and the dimensional parameter p lie in the range of 1 - 10. The conduction can be understood as electron hopping between localized states in a disorder system. Moreover, we found that the nanofiber devices with low room-temperature resistances could exhibit intrinsic electrical properties of PANI/HCl nanofibers which the p value smaller than 3 so we argue that PANI/HCl nanofibers could be taken as a quasi-one dimension system. On the other hand, the nanofiber devices with high room-temperature resistances show contact electrical properties with the dimensional parameter p > 3.
en_US
dc.language.isozh_TWen_US
dc.subject聚苯胺zh_TW
dc.subject导电特性zh_TW
dc.subject变程跳跃zh_TW
dc.subjectpolyanilineen_US
dc.subjectelectrical propertyen_US
dc.subjectvariable range hoppingen_US
dc.title聚苯胺奈米纤维之导电特性研究zh_TW
dc.titleElectrical Property of Polyaniline Nanofibersen_US
dc.typeThesisen_US
dc.contributor.department电子物理系所zh_TW
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