Effect of size reduction on the magnetic and antibacterial properties of ZnO:Zr:Mn nanoparticles synthesized by a cost-effective chemical method

被引:0
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作者
A. T. Ravichandran
K. Catherine Siriya Pushpa
K. Ravichandran
T. Arun
C. Ravidhas
B. Muralidharan
机构
[1] National College (Autonomous),Post Graduate and Research Department of Physics
[2] AVVM Sri Pushpam College (Autonomous),Post Graduate and Research Department of Physics
[3] National Institute of Technology,Department of Physics
[4] Bishop Heber College (Autonomous),Department of Physics
[5] BITS-PILANI-Dubai Campus,Department of Chemistry
关键词
Doping Level; High Doping Level; Antibacterial Efficiency; Target Drug Delivery System; Near Band Edge Emission;
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摘要
Zr and Zr + Mn doped ZnO nanopowders were synthesized using a simple soft chemical route keeping the Zr concentration in the precursor solution constant (3 at.%) and varying the Mn concentration (0, 1.5 and 9 at.%). From the X-ray diffraction studies, the crystallite size of ZnO:Zr nanopowder is found as 57 nm. The crystallite size decreases with the increase in the Mn doping level and attains a minimum of 23 nm at the maximum doping level examined in the present work (9 at.%). The Zr doped ZnO nanopowders found to have ferromagnetic property. The saturation magnetization increases with the increase in the Mn doping level and attains a maximum value at 7 at.% of Mn doping. The material shows superparamagnetic behavior at the doping level of 9 at.%. The antibacterial efficiency is found to be maximum at 9 at.% of Mn doping and at this doping level the grain size is minimum (20 nm) as evidenced from the SEM and TEM results.
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页码:5825 / 5832
页数:7
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