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Graphene quantum dot electrochemiluminescence increase by bio-generated H2O2 and its application in direct biosensing.


ABSTRACT: In this study, a novel signal-increase electrochemiluminescence (ECL) biosensor has been developed for the detection of glucose based on graphene quantum dot/glucose oxidase (GQD/GOx) on Ti foil. The proposed GQD with excellent ECL ability is synthesized through a green one-step strategy by the electrochemical reduction of graphene oxide quantum dot. Upon the addition of glucose, GOx can catalytically oxidize glucose and the direct electron transfer between the redox centre of GOx and the modified electrode also has been realized, which results in the bio-generated H2O2 for ECL signal increase in GQD and realizes the direct ECL detection of glucose. The signal-increase ECL biosensor enables glucose detection with high sensitivity reaching 5 × 10-6 mol l-1 in a wide linear range from 5 × 10-6 to 1.5 × 10-3 mol l-1. Additionally, the fabrication process of such GQD-based ECL biosensor is also suitable to other biologically produced H2O2 system, suggesting the possible applications in the sensitive detection of other biologically important targets (e.g. small molecules, protein, DNA and so on).

SUBMITTER: Yang S 

PROVIDER: S-EPMC7029901 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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Graphene quantum dot electrochemiluminescence increase by bio-generated H<sub>2</sub>O<sub>2</sub> and its application in direct biosensing.

Yang Shanli S   Chu Mingfu M   Du Jie J   Li Yingru Y   Gai Tao T   Tan Xinxin X   Xia Binyuan B   Wang Shaofei S  

Royal Society open science 20200129 1


In this study, a novel signal-increase electrochemiluminescence (ECL) biosensor has been developed for the detection of glucose based on graphene quantum dot/glucose oxidase (GQD/GO<i>x</i>) on Ti foil. The proposed GQD with excellent ECL ability is synthesized through a green one-step strategy by the electrochemical reduction of graphene oxide quantum dot. Upon the addition of glucose, GO<i>x</i> can catalytically oxidize glucose and the direct electron transfer between the redox centre of GO<i  ...[more]

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