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Nanoscale patterns with high conductivity based on silver nanoparticle inks were fabricated using spray coating method.
In the present study, we report a novel aptasensor based on silver nanoparticle enhanced fluorescence for the detection of adenosine.
We report highly sensitive and reliable strain sensors based on silver nanoparticle (AgNP) and carbon nanotube (CNT) composite thin films.
However, there are only a few reports about spray-coated conductive patterns based on silver nanoparticle inks until now[22, 26].
Among the conventional pattern technologies of printed electronics based on silver nanoparticle inks, inkjet printing is the most widely applied due to its great potential for a variety of substrates as well as high-throughput and cost-effective system.
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In this study, a facile one-step synthesis of a novel nanocomposite catalytic film was developed based on silver nanoparticles (AgNPs) immobilized in tannic acid-modified eggshell membrane (Tan-ESM).
Herein, we report a simple, sensitive label-free colorimetric assay of trypsin based on silver nanoparticles (AgNPs) aggregation.
These results confirm the high antibacterial behavior of the coatings based on silver nanoparticles polymer/sol-gel hybrid matrix.
In this study, we propose a new facile and rapid colorimetric detection method of Al3+ with excellent selectivity and high sensitivity based on silver nanoparticles (AgNPs) stabilized by reduced glutathione (GSH) in the presence of l-cysteine (Cys).
In this paper, we reported a sensitive and selective electrochemical method for quantify DNA methylation, analyzing DNA MTase activity and screening of MTase inhibitor based on silver nanoparticles (Ag NPs) decorated carbon nanocubes (CNCs) as signal tag.
We developed a newer preparation based on silver nanoparticles matrixed in hydropolymer guar gum for wound healing applications.
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