Study on ZnO-nanowire interdigitated electrodes for electroplating Ni-Co solution
碩士 === 中原大學 === 機械工程研究所 === 104 === Abstract A simple and inexpensive approach to selectively synthesized the ZnO nanowires at the specific area is proposed in this study. By integrating the hydrothermal method with the photolithography process, both the positive and negative resists were used to co...
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ndltd-TW-104CYCU54890112017-10-15T04:36:57Z http://ndltd.ncl.edu.tw/handle/42663800919078853643 Study on ZnO-nanowire interdigitated electrodes for electroplating Ni-Co solution 氧化鋅奈米線指叉電極晶片進行鎳鈷電鍍液濃度之研究 Hui-Tung Wang 王惠東 碩士 中原大學 機械工程研究所 104 Abstract A simple and inexpensive approach to selectively synthesized the ZnO nanowires at the specific area is proposed in this study. By integrating the hydrothermal method with the photolithography process, both the positive and negative resists were used to control the growth of nanowires through lift-off concept. The printed circuit board (PCB) was adopted as the substrate. On PCB, the interdigitated electrodes (IDE) array was firstly fabricated by etching the copper foil. Two types of chips were compared: global growth of ZnO nanowires on the device and patterned ZnO nanowires between IDE. Based on the Faraday''s law of induction, it is found that the ZnO nanowires have Faraday''s law of induction to capture electroplating solution of Metal. The detection of immobilized proteins is related to the variation of the current–voltage (I–V) characteristic curve. The experimental results show that ZnO nanowires have reliable immobilization capability for a wide range of electroplating solution concentrations. In addition, the electroplating solution from(0.16 g/L to 55 ng/L)can be detected. The chip with patterned ZnO nanowires between IDE is more sensitive than that with global growth of ZnO nanowires, even for small volume of electroplating solution. Yaw-Jen Chang 張耀仁 2016 學位論文 ; thesis 67 zh-TW |
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碩士 === 中原大學 === 機械工程研究所 === 104 === Abstract
A simple and inexpensive approach to selectively synthesized the ZnO nanowires at the specific area is proposed in this study. By integrating the hydrothermal method with the photolithography process, both the positive and negative resists were used to control the growth of nanowires through lift-off concept. The printed circuit board (PCB) was adopted as the substrate. On PCB, the interdigitated electrodes (IDE) array was firstly fabricated by etching the copper foil. Two types of chips were compared: global growth of ZnO nanowires on the device and patterned ZnO nanowires between IDE. Based on the Faraday''s law of induction, it is found that the ZnO nanowires have Faraday''s law of induction to capture electroplating solution of Metal. The detection of immobilized proteins is related to the variation of the current–voltage (I–V) characteristic curve. The experimental results show that ZnO nanowires have reliable immobilization capability for a wide range of electroplating solution concentrations. In addition, the electroplating solution from(0.16 g/L to 55 ng/L)can be detected. The chip with patterned ZnO nanowires between IDE is more sensitive than that with global growth of ZnO nanowires, even for small volume of electroplating solution.
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author2 |
Yaw-Jen Chang |
author_facet |
Yaw-Jen Chang Hui-Tung Wang 王惠東 |
author |
Hui-Tung Wang 王惠東 |
spellingShingle |
Hui-Tung Wang 王惠東 Study on ZnO-nanowire interdigitated electrodes for electroplating Ni-Co solution |
author_sort |
Hui-Tung Wang |
title |
Study on ZnO-nanowire interdigitated electrodes for electroplating Ni-Co solution |
title_short |
Study on ZnO-nanowire interdigitated electrodes for electroplating Ni-Co solution |
title_full |
Study on ZnO-nanowire interdigitated electrodes for electroplating Ni-Co solution |
title_fullStr |
Study on ZnO-nanowire interdigitated electrodes for electroplating Ni-Co solution |
title_full_unstemmed |
Study on ZnO-nanowire interdigitated electrodes for electroplating Ni-Co solution |
title_sort |
study on zno-nanowire interdigitated electrodes for electroplating ni-co solution |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/42663800919078853643 |
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