Facile Synthesis of Silver-Doped Zinc Oxide Nanostructures as Efficient Scaffolds for Detection of p-Nitrophenol

Facile Synthesis of Silver-Doped Zinc Oxide Nanostructures as Efficient Scaffolds for Detection of p-Nitrophenol

Deepika Thakur;Anshu Sharma;Dharmender Singh Rana;Nagesh Thakur;Dilbag Singh;Tomas Tamulevicius;Mindaugas Andrulevicius;Sigitas Tamulevicius;Sudheesh K. Shukla;Sourbh Thakur;Thakur, Deepika;Sharma, Anshu;Rana, Dharmender Singh;Thakur, Nagesh;Singh, Dilbag;Tamulevicius, Tomas;Andrulevicius, Mindaugas;Tamulevicius, Sigitas;Shukla, Sudheesh K.;Thakur, Sourbh;
chemosensors 2020 Vol. 8 pp. 108-
208
thakur2020chemosensorsfacile

Abstract

In this paper, silver-doped zinc oxide nanoparticles were synthesized by using a solution combustion technique, in which zinc nitrate is used as an oxidizer and tartaric acid as a fuel. The phase composition, morphology and structural properties of the as-synthesized zinc oxide and silver-doped zinc oxide were established by using powdered X-ray diffraction, field emission scanning electron microscopy coupled with energy-dispersive X-ray spectroscopy, and X-ray photoelectron spectroscopy studies. Due to well-defined morphologies and crystallinity, the pure zinc oxide and silver-doped zinc oxide nanostructures can be used as efficient chemical sensors for the detection of p-nitrophenol (PNP). ZnO was found to show a low value of the limit of detection (LOD), i.e., 2.175 µM/L, for p-nitrophenol sensing; moreover, a sharp decrease in the limit of detection was observed with an increase in the concentration of silver ions, and the LOD value decreased to 0.669 µM/L for 10 mol % silver-doped zinc oxide. It is therefore concluded that Ag-doped ZnO shows a lower limit of detection as compared to pure ZnO for p-nitrophenol sensing.

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270177
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10.3390/chemosensors8040108
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