Study on the chitosan oligosaccharide Modified Planar Glucose Biosensor

碩士 === 國立雲林科技大學 === 工業化學與災害防治研究所 === 91 === An amperometric glucose biosensor strip was fabricated by coating ferricyanide modified with chitin-oligomer and the enzyme glucose oxidase (GOD) on screen-printed carbon electrodes. Sensor strips without GOD were characterized by cyclic voltammetry (CV)...

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Main Authors: Li-In Lu, 呂俐瑩
Other Authors: Wen-Chang Chen
Format: Others
Language:zh-TW
Published: 2003
Online Access:http://ndltd.ncl.edu.tw/handle/59737185097809903973
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spelling ndltd-TW-091YUNT56610312016-06-10T04:15:40Z http://ndltd.ncl.edu.tw/handle/59737185097809903973 Study on the chitosan oligosaccharide Modified Planar Glucose Biosensor 以幾丁寡醣修飾平面式葡萄糖生物感測器之研究 Li-In Lu 呂俐瑩 碩士 國立雲林科技大學 工業化學與災害防治研究所 91 An amperometric glucose biosensor strip was fabricated by coating ferricyanide modified with chitin-oligomer and the enzyme glucose oxidase (GOD) on screen-printed carbon electrodes. Sensor strips without GOD were characterized by cyclic voltammetry (CV) and scanning electron micrograph (SEM). A linear relation between peak current and square root of scan rate where the linear line passes through origin suggests reversible electrochemistry of chitin-oligomer modified ferricyanide. Results from chronopotentiometric (CP) measurements showed that an increase of cathodic limiting current was resulted from an increase of ferricyanide concentration on the electrode surface, which could be attributed to the addition of chitin-oligomer. Moreover, results from chronoamperometric (CA) measurements indicated that pH effect on the background current of the sensor strips could be neglected in the range between 6.0 and 9.0. Furthermore, this glucose-sensing system exhibited high sensitivity, a short response time (< 15 s), and a wide linear response range (0-500 mg glucose/dl). Wen-Chang Chen 陳文章 2003 學位論文 ; thesis 96 zh-TW
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language zh-TW
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description 碩士 === 國立雲林科技大學 === 工業化學與災害防治研究所 === 91 === An amperometric glucose biosensor strip was fabricated by coating ferricyanide modified with chitin-oligomer and the enzyme glucose oxidase (GOD) on screen-printed carbon electrodes. Sensor strips without GOD were characterized by cyclic voltammetry (CV) and scanning electron micrograph (SEM). A linear relation between peak current and square root of scan rate where the linear line passes through origin suggests reversible electrochemistry of chitin-oligomer modified ferricyanide. Results from chronopotentiometric (CP) measurements showed that an increase of cathodic limiting current was resulted from an increase of ferricyanide concentration on the electrode surface, which could be attributed to the addition of chitin-oligomer. Moreover, results from chronoamperometric (CA) measurements indicated that pH effect on the background current of the sensor strips could be neglected in the range between 6.0 and 9.0. Furthermore, this glucose-sensing system exhibited high sensitivity, a short response time (< 15 s), and a wide linear response range (0-500 mg glucose/dl).
author2 Wen-Chang Chen
author_facet Wen-Chang Chen
Li-In Lu
呂俐瑩
author Li-In Lu
呂俐瑩
spellingShingle Li-In Lu
呂俐瑩
Study on the chitosan oligosaccharide Modified Planar Glucose Biosensor
author_sort Li-In Lu
title Study on the chitosan oligosaccharide Modified Planar Glucose Biosensor
title_short Study on the chitosan oligosaccharide Modified Planar Glucose Biosensor
title_full Study on the chitosan oligosaccharide Modified Planar Glucose Biosensor
title_fullStr Study on the chitosan oligosaccharide Modified Planar Glucose Biosensor
title_full_unstemmed Study on the chitosan oligosaccharide Modified Planar Glucose Biosensor
title_sort study on the chitosan oligosaccharide modified planar glucose biosensor
publishDate 2003
url http://ndltd.ncl.edu.tw/handle/59737185097809903973
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