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Highly sensitive arrayed indium-antimony nanowires for infrared detection

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摘要

The objective of this study is to achieve a high sensitive infrared detector by fabricating highly ordered array of indium-antimony (In-Sb) nanowires which is a semiconductor material. The approach is to investigate an infrared detector with arrayed nanowires which can transport signals in one dimension to obtain high efficiency and sensitivity compared with In-Sb by using traditional thin film fabrications. This research expects to provide an infrared detector by fabricating III-V alloy nanowires to highly improve the resolution of infrared signal. To develop scaled-up functional devices, highly ordered nanowire arrays are essential building blocks. Many candidate materials (metals, alloys, oxides and semiconductors) have been studied for various potential applications in nanotechnology and have shown some promising results. The solid metallic nanowires have been exploited for a wide range of applications to take the advantages of their large length/diameter aspect ratio. Further development to synthesize nanowires efficiently at lower cost is the direction for manufacturing next generation nanodevices. In this study, various diameters of ordering nanowires, from 10 nm to 500 nm, were fabricated and evaluated the performance of the sensitivity of infrared detection. Moreover, a 1 inch plate, which can be regarded as a device, with nanowires array was fabricated by designing a new type of processing chamber.

原文English
主出版物標題Thermosense
主出版物子標題Thermal Infrared Applications XXXVII
編輯Joseph N. Zalameda, Sheng-Jen Hsieh
發行者SPIE
ISBN(電子)9781628416015
DOIs
出版狀態Published - 2015
事件SPIE ThermoSense Conference: Thermal Infrared Applications XXXVII - Baltimore, United States
持續時間: 20 4月 201523 4月 2015

出版系列

名字Proceedings of SPIE - The International Society for Optical Engineering
9485
ISSN(列印)0277-786X
ISSN(電子)1996-756X

Conference

ConferenceSPIE ThermoSense Conference: Thermal Infrared Applications XXXVII
國家/地區United States
城市Baltimore
期間20/04/1523/04/15

文獻附註

Publisher Copyright:
Copyright © 2015 SPIE.

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