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dc.contributor.author許閔壹en_US
dc.contributor.authorSheu, Min-Een_US
dc.contributor.author趙書琦en_US
dc.contributor.authorShuchi Chaoen_US
dc.date.accessioned2014-12-12T02:17:37Z-
dc.date.available2014-12-12T02:17:37Z-
dc.date.issued1996en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#NT850429009en_US
dc.identifier.urihttp://hdl.handle.net/11536/62042-
dc.description.abstract本論文主要是以先前製成的固態微型化二極體感測器為藍本,加以轉 換成為適合於液態環境使用的研究。這種二極體感測器是由三氧化鎢和氧 化銥所組成的,在液態環境中具有相當的安定性,是一般的介面和蕭特基 二極體所無法比擬的。以酸(pH 4.2)鹼(pH 8.3)液交替流過元件的實 驗來看,即可證明這種二極體的確可長時間存在於液體環境中,並不失其 感測性能。我們在這種二極體感測元件上塗上含有葡萄糖氧化脢的聚乙烯 醇薄層,並且利用了固定化(immobilization)技術,將其製成不溶於水 的薄膜。這種感測器中的葡萄糖氧化脢會催化葡萄糖的氧化並於過程中產 生氫離子,使三氧化鎢/氧化銥的整流電性受到調變,進而偵測出葡萄糖 的濃度。實驗發現,我們的感測器對葡萄糖有顯著和穩定的感測性能,並 具有解析葡萄糖濃度的能力。在其他方面,我們也對具有感測鹼性物質能 力的氫氧化鎳電色材料做了基本的物性與化性分析實驗,希望藉由這個實 驗的基礎,使我們實驗室在將來能依據這些分析發展出新的鹼性物質感測 器。 We have used the WO3/IrO2-based electrochemical microdiode in the liquid state. It was found that the diode can work stably in H2O and liquid states was then made with different pH value. A comparison between the I-V characteristics in the solid. We next placed a glucose oxidase layer over the WO3/IrO2 electrochemical microdiode and used it to detect glucose. This device makes use of the catalysis reaction of glucoseoxidase which generates H+ ion that can reduce forward current in the microdiode. The microdiode was found to be usable as a liquid- state glucose microsensor. We also performed some experiments on the electrode characteristics of nickel hydroxide. These experiments are instended to show the pH-dependent behavior of this electrochromic material in alkaline solutions.zh_TW
dc.language.isozh_TWen_US
dc.subject三氧化鎢?610zh_TW
dc.subject氧化銥?610zh_TW
dc.subject感測?610zh_TW
dc.subject液態?610zh_TW
dc.subject葡萄糖?610zh_TW
dc.subjectWO3?610en_US
dc.subjectIrO2?610en_US
dc.subjectsensing?610en_US
dc.subjectliquid?610en_US
dc.subjectglucose?610en_US
dc.title於液態環境中穩定工作之三氧化鎢/氧化銥二極體感測元件研究zh_TW
dc.titleThe Research of WO3/IrO2-Based Electrochemical Sensing Diode Working Stably in Liquid Stateen_US
dc.typeThesisen_US
dc.contributor.department電子物理系所zh_TW
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