In Situ Deposited Cu2O/NiO Nanoarrays Sensors For Bio-H2S Detection In Blood

Developing a bio-sensor for rapid detection of biological hydrogen sulfide (bio-H2S) is of great significance to human health. Metal-oxide-semiconductor heterostructure based sensors have attracted extensive attention due to their large area, order structure, fast response, and high sensitivity. In...

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Main Authors: Haoming Sun, Min Chen, Xiaojing Tian, Bo wang, Yinan Tao, Manli Lu, Xiaona Liu, Pinhua Zhang, Guangliang Cui, Lulu Du, Kaifeng Xue
Format: Article
Language:English
Published: Tamkang University Press 2022-11-01
Series:Journal of Applied Science and Engineering
Subjects:
Online Access:http://jase.tku.edu.tw/articles/jase-202307-26-7-0001
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author Haoming Sun
Min Chen
Xiaojing Tian
Bo wang
Yinan Tao
Manli Lu
Xiaona Liu
Pinhua Zhang
Guangliang Cui
Lulu Du
Kaifeng Xue
author_facet Haoming Sun
Min Chen
Xiaojing Tian
Bo wang
Yinan Tao
Manli Lu
Xiaona Liu
Pinhua Zhang
Guangliang Cui
Lulu Du
Kaifeng Xue
author_sort Haoming Sun
collection DOAJ
description Developing a bio-sensor for rapid detection of biological hydrogen sulfide (bio-H2S) is of great significance to human health. Metal-oxide-semiconductor heterostructure based sensors have attracted extensive attention due to their large area, order structure, fast response, and high sensitivity. In this study, we prepared the Cu2O/NiO nanoarrays by the two-dimensional electrochemical in-situ assembly deposition method for bio-H2S detection. The sensors based on Cu2O/NiO nanoarrays were measured by a customized test system. The experimental results indicated that the sensor exhibited excellent sensitivity, low detection level and good selectivity to bio-H2S in the range of 1 ∼ 200 µmol/L. Moreover, we proposed that the superior performance of the nanoarrays was mainly attributed to the synergistic effects of Cu2O/NiO heterostructure as well as vulcanization reaction of Cu2O. The results demonstrate that the Cu2O/NiO nanoarrays based sensor is a potential candidate for high performance bio-H2S sensor.
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spelling doaj.art-f9fe258c70ec494085835b01db45224a2022-12-22T04:14:25ZengTamkang University PressJournal of Applied Science and Engineering2708-99672708-99752022-11-0126790591210.6180/jase.202307_26(7).0001In Situ Deposited Cu2O/NiO Nanoarrays Sensors For Bio-H2S Detection In BloodHaoming Sun0Min Chen1Xiaojing Tian2Bo wang3Yinan Tao4Manli Lu5Xiaona Liu6Pinhua Zhang7Guangliang Cui8Lulu Du9Kaifeng Xue10School of Mechanical Engineering, Dalian Jiaotong University, Dalian, 116028, China.School of Physics and Electrical Engineering, Linyi University, Linyi, 276000, ChinaSchool of Electronic Information, Qingdao University, Qingdao, 266071, ChinaSchool of Mechanical Engineering, Dalian Jiaotong University, Dalian, 116028, ChinaSchool of Mechanical Engineering, Dalian Jiaotong University, Dalian, 116028, ChinaSchool of Mechanical Engineering, Dalian Jiaotong University, Dalian, 116028, ChinaSchool of Physics and Electrical Engineering, Linyi University, Linyi, 276000, ChinaSchool of Physics and Electrical Engineering, Linyi University, Linyi, 276000, ChinaSchool of Physics and Electrical Engineering, Linyi University, Linyi, 276000, ChinaSchool of Physics and Electrical Engineering, Linyi University, Linyi, 276000, ChinaSchool of Physics and Electrical Engineering, Linyi University, Linyi, 276000, ChinaSchool of Physics and Electrical Engineering, Linyi University, Linyi, 276000, ChinaDeveloping a bio-sensor for rapid detection of biological hydrogen sulfide (bio-H2S) is of great significance to human health. Metal-oxide-semiconductor heterostructure based sensors have attracted extensive attention due to their large area, order structure, fast response, and high sensitivity. In this study, we prepared the Cu2O/NiO nanoarrays by the two-dimensional electrochemical in-situ assembly deposition method for bio-H2S detection. The sensors based on Cu2O/NiO nanoarrays were measured by a customized test system. The experimental results indicated that the sensor exhibited excellent sensitivity, low detection level and good selectivity to bio-H2S in the range of 1 ∼ 200 µmol/L. Moreover, we proposed that the superior performance of the nanoarrays was mainly attributed to the synergistic effects of Cu2O/NiO heterostructure as well as vulcanization reaction of Cu2O. The results demonstrate that the Cu2O/NiO nanoarrays based sensor is a potential candidate for high performance bio-H2S sensor.http://jase.tku.edu.tw/articles/jase-202307-26-7-0001cu2onionanoarraysbio-h2s sensor
spellingShingle Haoming Sun
Min Chen
Xiaojing Tian
Bo wang
Yinan Tao
Manli Lu
Xiaona Liu
Pinhua Zhang
Guangliang Cui
Lulu Du
Kaifeng Xue
In Situ Deposited Cu2O/NiO Nanoarrays Sensors For Bio-H2S Detection In Blood
Journal of Applied Science and Engineering
cu2o
nio
nanoarrays
bio-h2s sensor
title In Situ Deposited Cu2O/NiO Nanoarrays Sensors For Bio-H2S Detection In Blood
title_full In Situ Deposited Cu2O/NiO Nanoarrays Sensors For Bio-H2S Detection In Blood
title_fullStr In Situ Deposited Cu2O/NiO Nanoarrays Sensors For Bio-H2S Detection In Blood
title_full_unstemmed In Situ Deposited Cu2O/NiO Nanoarrays Sensors For Bio-H2S Detection In Blood
title_short In Situ Deposited Cu2O/NiO Nanoarrays Sensors For Bio-H2S Detection In Blood
title_sort in situ deposited cu2o nio nanoarrays sensors for bio h2s detection in blood
topic cu2o
nio
nanoarrays
bio-h2s sensor
url http://jase.tku.edu.tw/articles/jase-202307-26-7-0001
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