Preparation of graphene nanocomposites from aqueous silver nitrate using graphene oxide’s peroxidase-like and carbocatalytic properties

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作者
Kunal Garg
Petri Papponen
Andreas Johansson
Nitipon Puttaraksa
Leona Gilbert
机构
[1] Department of Biological and Environmental Sciences,
[2] NanoScience Center,undefined
[3] University of Jyväskylä,undefined
[4] Department of Chemistry,undefined
[5] NanoScience Center,undefined
[6] University of Jyväskylä,undefined
[7] Department of Physics,undefined
[8] NanoScience Center,undefined
[9] University of Jyväskylä,undefined
[10] Faculty of Science and Nanoscience & Nanotechnology,undefined
[11] Graduate Program,undefined
[12] King Mongkut’s University of Technology Thonburi,undefined
[13] Te?ted Ltd,undefined
[14] Mattilaniemi 6-8,undefined
来源
Scientific Reports | / 10卷
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摘要
The present study evaluates the role of graphene oxide’s (GO’s) peroxidase-like and inherent/carbocatalytic properties in oxidising silver nitrate (AgNO3) to create graphene nanocomposites with silver nanoparticles (GO/Ag nanocomposite). Activation of peroxidase-like catalytic function of GO required hydrogen peroxide (H2O2) and ammonia (NH3) in pH 4.0 disodium hydrogen phosphate (Na2HPO4). Carbocatalytic abilities of GO were triggered in pH 4.0 deionised distilled water (ddH2O). Transmission electron microscope (TEM), scanning electron microscope (SEM), cyclic voltammetry (CV) and UV-Vis spectroscopy aided in qualitatively and quantitatively assessing GO/Ag nanocomposites. TEM and SEM analysis demonstrated the successful use of GO’s peroxidase-like and carbocatalytic properties to produce GO/Ag nanocomposite. UV-Vis analysis indicated a higher yield in optical density values for GO/Ag nanocomposites created using GO’s carbocatalytic ability rather than its peroxidase-like counterpart. Additionally, CV demonstrated that GO/Ag nanocomposite fabricated here is a product of an irreversible electrochemical reaction. Our study outcomes show new opportunities for GO as a standalone catalyst in biosensing. We demonstrate a sustainable approach to obtain graphene nanocomposites exclusive of harmful chemicals or physical methods.
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