Ultra-Sensitivity Glucose Sensor Based on Field Emitters

<p>Abstract</p> <p>A new glucose sensor based on field emitter of ZnO nanorod arrays (ZNA) was fabricated. This new type of ZNA field emitter-based sensor shows high sensitivity with experimental limit of detection of 1 nM glucose solution and a detection range from 1 nM to 50 &...

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Main Authors: Song Yinglin, Liu Huibiao, Qian Xuemin, Wang Shu, Li Yuliang, Zhu Daoben
Format: Article
Language:English
Published: SpringerOpen 2009-01-01
Series:Nanoscale Research Letters
Subjects:
Online Access:http://dx.doi.org/10.1007/s11671-009-9372-0
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author Song Yinglin
Liu Huibiao
Qian Xuemin
Wang Shu
Li Yuliang
Zhu Daoben
author_facet Song Yinglin
Liu Huibiao
Qian Xuemin
Wang Shu
Li Yuliang
Zhu Daoben
author_sort Song Yinglin
collection DOAJ
description <p>Abstract</p> <p>A new glucose sensor based on field emitter of ZnO nanorod arrays (ZNA) was fabricated. This new type of ZNA field emitter-based sensor shows high sensitivity with experimental limit of detection of 1 nM glucose solution and a detection range from 1 nM to 50 &#956;M in air at room temperature, which is lower than that of glucose sensors based on surface plasmon resonance spectroscopy, fluorescence signal transmission, and electrochemical signal transduction. The new glucose sensor provides a key technique for promising consuming application in biological system for detecting low levels of glucose on single cells or bacterial cultures.</p>
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spelling doaj.art-1f4f328538b3440398eb417bc18f19b72023-09-02T16:07:28ZengSpringerOpenNanoscale Research Letters1931-75731556-276X2009-01-0141011411145Ultra-Sensitivity Glucose Sensor Based on Field EmittersSong YinglinLiu HuibiaoQian XueminWang ShuLi YuliangZhu Daoben<p>Abstract</p> <p>A new glucose sensor based on field emitter of ZnO nanorod arrays (ZNA) was fabricated. This new type of ZNA field emitter-based sensor shows high sensitivity with experimental limit of detection of 1 nM glucose solution and a detection range from 1 nM to 50 &#956;M in air at room temperature, which is lower than that of glucose sensors based on surface plasmon resonance spectroscopy, fluorescence signal transmission, and electrochemical signal transduction. The new glucose sensor provides a key technique for promising consuming application in biological system for detecting low levels of glucose on single cells or bacterial cultures.</p>http://dx.doi.org/10.1007/s11671-009-9372-0ZnO nanorod arraysGlucose sensorField emitterHigh sensitivity
spellingShingle Song Yinglin
Liu Huibiao
Qian Xuemin
Wang Shu
Li Yuliang
Zhu Daoben
Ultra-Sensitivity Glucose Sensor Based on Field Emitters
Nanoscale Research Letters
ZnO nanorod arrays
Glucose sensor
Field emitter
High sensitivity
title Ultra-Sensitivity Glucose Sensor Based on Field Emitters
title_full Ultra-Sensitivity Glucose Sensor Based on Field Emitters
title_fullStr Ultra-Sensitivity Glucose Sensor Based on Field Emitters
title_full_unstemmed Ultra-Sensitivity Glucose Sensor Based on Field Emitters
title_short Ultra-Sensitivity Glucose Sensor Based on Field Emitters
title_sort ultra sensitivity glucose sensor based on field emitters
topic ZnO nanorod arrays
Glucose sensor
Field emitter
High sensitivity
url http://dx.doi.org/10.1007/s11671-009-9372-0
work_keys_str_mv AT songyinglin ultrasensitivityglucosesensorbasedonfieldemitters
AT liuhuibiao ultrasensitivityglucosesensorbasedonfieldemitters
AT qianxuemin ultrasensitivityglucosesensorbasedonfieldemitters
AT wangshu ultrasensitivityglucosesensorbasedonfieldemitters
AT liyuliang ultrasensitivityglucosesensorbasedonfieldemitters
AT zhudaoben ultrasensitivityglucosesensorbasedonfieldemitters