Graphene Oxide/Silver Nanohybrid as Multi-functional Material for Highly Efficient Bacterial Disinfection and Detection of Organic Dye

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作者
Le Thi Tam
Ngo Xuan Dinh
Nguyen Van Cuong
Nguyen Van Quy
Tran Quang Huy
Duc-The Ngo
Kristian Mølhave
Anh-Tuan Le
机构
[1] Hanoi University of Science and Technology (HUST),Department of Nanoscience and Nanotechnology, Advanced Institute for Science and Technology (AIST)
[2] University of Transport Technology,International Training Institute for Materials Science (ITIMS)
[3] Hanoi University of Science and Technology,Electron Microscopy Centre, School of Materials
[4] National Institute of Hygiene and Epidemiology (NIHE),Department of Micro
[5] University of Manchester, and Nanotechnology
[6] Technical University of Denmark,undefined
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关键词
GO-Ag nanohybrid; bactericidal; electron microscopy; MB detection; surface enhanced Raman scattering;
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摘要
In this work, a multi-functional hybrid system consisting of graphene oxide and silver nanoparticles (GO-Ag NPs) was successfully synthesized by using a two-step chemical process. We firstly demonstrated noticeable bactericidal ability of the GO-Ag hybrid system. We provide more chemo-physical evidence explaining the antibacterial behavior of GO-Ag nanohybrid against Gram-negative Escherichia Coli and Gram-positive Staphylococcus aureus in light of ultrastructural damage analyses and Ag1+ ions release rate onto the cells/medium. A further understanding of the mode of antimicrobial action is very important for designing and developing advanced antimicrobial systems. Secondly, we have also demonstrated that the GO-Ag nanohybrid material could be used as a potential surface enhanced Raman scattering (SERS) substrate to detect and quantify organic dyes, e.g., methylene blue (MB), in aqueous media. Our findings revealed that the GO-Ag hybrid system showed better SERS performance of MB detection than that of pure Ag-NPs. MB could be detected at a concentration as low as 1 ppm. The GO-Ag-based SERS platform can be effectively used to detect trace concentrations of various types of organic dyes in aqueous media. With the aforementioned properties, the GO-Ag hybrid system is found to be very promising as a multi-functional material for advanced biomedicine and environmental monitoring applications.
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页码:5321 / 5333
页数:12
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