Monolithical Integration of Gold Microelectrodes with Readout Circuits for Label-free Detection of DNAs

碩士 === 國立清華大學 === 電子工程研究所 === 102 === Applications of DNA assays have grown rapidly in recent years. Novel technologies are also developed for DNA assays. The high specificity of DNAs is useful for detecting target DNAs reliably. This thesis proposed two methods for detecting the hybridization and a...

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Main Authors: Lee, Yu-Chieh, 李郁潔
Other Authors: 陳新
Format: Others
Language:en_US
Published: 2014
Online Access:http://ndltd.ncl.edu.tw/handle/00180527794962761275
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spelling ndltd-TW-102NTHU54280512016-03-09T04:34:23Z http://ndltd.ncl.edu.tw/handle/00180527794962761275 Monolithical Integration of Gold Microelectrodes with Readout Circuits for Label-free Detection of DNAs 整合金電極與感測電路之單晶片於免標定DNA檢驗 Lee, Yu-Chieh 李郁潔 碩士 國立清華大學 電子工程研究所 102 Applications of DNA assays have grown rapidly in recent years. Novel technologies are also developed for DNA assays. The high specificity of DNAs is useful for detecting target DNAs reliably. This thesis proposed two methods for detecting the hybridization and amplification of DNAs through biocompatible gold as microelectrodes. As hybridization occurs on the electrode surface, DNAs accumulate on the surface. Therefore, the charges increase and the double-layer capacitance of the electrode-electrolyte interface decreases. To avoid the conventional fluorescent-labeling methods, circuits for detecting either the intrinsic charges of DNAs or the impedance change induced by DNAs are proposed. To detect the intrinsic charges, EGFET integrated with gold electrodes and readout circuits are design to record the signal as an output voltage. In addition, an ultra low-pass filter with noise cancellation is employed to eliminate the high-frequency noise. To detect the change of the double-layer capacitance, an operational amplifier with a feedback capacitor array is connected to a gold electrode. As the double-layer capacitance changes with the DNA binding to the electrode surface. The capacitance change is amplified as an output voltage. Both type of circuits are integrated with gold microelectrode arrays on a single chip. The capability of the chip to detect the hybridization and amplification of DNAs are tested. 陳新 2014 學位論文 ; thesis 92 en_US
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language en_US
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description 碩士 === 國立清華大學 === 電子工程研究所 === 102 === Applications of DNA assays have grown rapidly in recent years. Novel technologies are also developed for DNA assays. The high specificity of DNAs is useful for detecting target DNAs reliably. This thesis proposed two methods for detecting the hybridization and amplification of DNAs through biocompatible gold as microelectrodes. As hybridization occurs on the electrode surface, DNAs accumulate on the surface. Therefore, the charges increase and the double-layer capacitance of the electrode-electrolyte interface decreases. To avoid the conventional fluorescent-labeling methods, circuits for detecting either the intrinsic charges of DNAs or the impedance change induced by DNAs are proposed. To detect the intrinsic charges, EGFET integrated with gold electrodes and readout circuits are design to record the signal as an output voltage. In addition, an ultra low-pass filter with noise cancellation is employed to eliminate the high-frequency noise. To detect the change of the double-layer capacitance, an operational amplifier with a feedback capacitor array is connected to a gold electrode. As the double-layer capacitance changes with the DNA binding to the electrode surface. The capacitance change is amplified as an output voltage. Both type of circuits are integrated with gold microelectrode arrays on a single chip. The capability of the chip to detect the hybridization and amplification of DNAs are tested.
author2 陳新
author_facet 陳新
Lee, Yu-Chieh
李郁潔
author Lee, Yu-Chieh
李郁潔
spellingShingle Lee, Yu-Chieh
李郁潔
Monolithical Integration of Gold Microelectrodes with Readout Circuits for Label-free Detection of DNAs
author_sort Lee, Yu-Chieh
title Monolithical Integration of Gold Microelectrodes with Readout Circuits for Label-free Detection of DNAs
title_short Monolithical Integration of Gold Microelectrodes with Readout Circuits for Label-free Detection of DNAs
title_full Monolithical Integration of Gold Microelectrodes with Readout Circuits for Label-free Detection of DNAs
title_fullStr Monolithical Integration of Gold Microelectrodes with Readout Circuits for Label-free Detection of DNAs
title_full_unstemmed Monolithical Integration of Gold Microelectrodes with Readout Circuits for Label-free Detection of DNAs
title_sort monolithical integration of gold microelectrodes with readout circuits for label-free detection of dnas
publishDate 2014
url http://ndltd.ncl.edu.tw/handle/00180527794962761275
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