Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu<sub>2</sub>O–BSA Nanoparticles Modified GCE
Transition-metal nanomaterials are very important to non-enzymatic glucose sensing because of their excellent electrocatalytic ability, good selectivity, the fact that they are not easily interfered with by chloride ion (Cl<sup>−</sup>), and low cost. However, the linear detect...
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doaj-5741352a112e4e1c920c6efbaee06bb42020-11-25T01:15:33ZengMDPI AGSensors1424-82202019-06-011912282410.3390/s19122824s19122824Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu<sub>2</sub>O–BSA Nanoparticles Modified GCEZhikuang Dai0Ailing Yang1Xichang Bao2Renqiang Yang3Department of Physics, College of Information Science and Engineering, Ocean University of China, Qingdao 266100, Shandong, ChinaDepartment of Physics, College of Information Science and Engineering, Ocean University of China, Qingdao 266100, Shandong, ChinaQingdao Institute of Bioenergy & Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266100, Shandong, ChinaQingdao Institute of Bioenergy & Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266100, Shandong, ChinaTransition-metal nanomaterials are very important to non-enzymatic glucose sensing because of their excellent electrocatalytic ability, good selectivity, the fact that they are not easily interfered with by chloride ion (Cl<sup>−</sup>), and low cost. However, the linear detection range needs to be expanded. In this paper, Cu<sub>2</sub>O−bovine serum albumin (BSA) core-shell nanoparticles (NPs) were synthesized for the first time in air at room temperature by a facile and green route. The structure and morphology of Cu<sub>2</sub>O−BSA NPs were characterized. The as-prepared Cu<sub>2</sub>O−BSA NPs were used to modify the glassy carbon electrode (GCE) in a Nafion matrix. By using cyclic voltammetry (CV), the influence from scanning speed, concentration of NaOH, and load of Cu<sub>2</sub>O−BSA NPs for the modified electrodes was probed. Cu<sub>2</sub>O−BSA NPs showed direct electrocatalytic activity for the oxidation of glucose in 50 mM NaOH solution at 0.6 V. The chronoamperometry result showed this constructing sensor in the detection of glucose with a lowest detection limit of 0.4 μM, a linear detection range up to 10 mM, a high sensitivity of 1144.81 μAmM<sup>−1</sup>cm<sup>−2</sup> and reliable anti-interference property to Cl<sup>−</sup>, uric acid (UA), ascorbic acid (AA), and acetaminophen (AP). Cu<sub>2</sub>O−BSA NPs are promising nanostructures for the fabrication of non-enzymatic glucose electrochemical sensing devices.https://www.mdpi.com/1424-8220/19/12/2824Cu<sub>2</sub>O–BSA nanoparticlesnon-enzymatic glucose sensingcyclic voltammetrychronoamperometryanti-interference |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhikuang Dai Ailing Yang Xichang Bao Renqiang Yang |
spellingShingle |
Zhikuang Dai Ailing Yang Xichang Bao Renqiang Yang Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu<sub>2</sub>O–BSA Nanoparticles Modified GCE Sensors Cu<sub>2</sub>O–BSA nanoparticles non-enzymatic glucose sensing cyclic voltammetry chronoamperometry anti-interference |
author_facet |
Zhikuang Dai Ailing Yang Xichang Bao Renqiang Yang |
author_sort |
Zhikuang Dai |
title |
Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu<sub>2</sub>O–BSA Nanoparticles Modified GCE |
title_short |
Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu<sub>2</sub>O–BSA Nanoparticles Modified GCE |
title_full |
Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu<sub>2</sub>O–BSA Nanoparticles Modified GCE |
title_fullStr |
Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu<sub>2</sub>O–BSA Nanoparticles Modified GCE |
title_full_unstemmed |
Facile Non-Enzymatic Electrochemical Sensing for Glucose Based on Cu<sub>2</sub>O–BSA Nanoparticles Modified GCE |
title_sort |
facile non-enzymatic electrochemical sensing for glucose based on cu<sub>2</sub>o–bsa nanoparticles modified gce |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2019-06-01 |
description |
Transition-metal nanomaterials are very important to non-enzymatic glucose sensing because of their excellent electrocatalytic ability, good selectivity, the fact that they are not easily interfered with by chloride ion (Cl<sup>−</sup>), and low cost. However, the linear detection range needs to be expanded. In this paper, Cu<sub>2</sub>O−bovine serum albumin (BSA) core-shell nanoparticles (NPs) were synthesized for the first time in air at room temperature by a facile and green route. The structure and morphology of Cu<sub>2</sub>O−BSA NPs were characterized. The as-prepared Cu<sub>2</sub>O−BSA NPs were used to modify the glassy carbon electrode (GCE) in a Nafion matrix. By using cyclic voltammetry (CV), the influence from scanning speed, concentration of NaOH, and load of Cu<sub>2</sub>O−BSA NPs for the modified electrodes was probed. Cu<sub>2</sub>O−BSA NPs showed direct electrocatalytic activity for the oxidation of glucose in 50 mM NaOH solution at 0.6 V. The chronoamperometry result showed this constructing sensor in the detection of glucose with a lowest detection limit of 0.4 μM, a linear detection range up to 10 mM, a high sensitivity of 1144.81 μAmM<sup>−1</sup>cm<sup>−2</sup> and reliable anti-interference property to Cl<sup>−</sup>, uric acid (UA), ascorbic acid (AA), and acetaminophen (AP). Cu<sub>2</sub>O−BSA NPs are promising nanostructures for the fabrication of non-enzymatic glucose electrochemical sensing devices. |
topic |
Cu<sub>2</sub>O–BSA nanoparticles non-enzymatic glucose sensing cyclic voltammetry chronoamperometry anti-interference |
url |
https://www.mdpi.com/1424-8220/19/12/2824 |
work_keys_str_mv |
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1725152564154990592 |