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Environment-Friendly Synthesis of Copper Ferrite Nanoparticles and Their Characterizations
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In green Nano biotechnology a number of methods are used to create nanoparticles via virus, microbes and plants. Plant mediated synthesis is better than microbes due to its availability and nontoxic properties. In this study we create Copper ferrite Nano particles by using mint extract by auto –combustion. Traditional characterization techniques such as XRD, FTIR and VSM have been employed. XRD verified the crystalline nature of copper ferrites. The magnetic properties of Copper ferrite Nano particleshave been investigated by VSM, the analysis showed Copper ferrite Nano particles are paramagnetic in nature as it lacks remnant and coercivity. FTIR analysis indicates the presence of phenolic contents as the stabilizing agent. The peaks reveal the different functional groups. The above mentioned results show ecofriendly synthesis of copper ferrite nanoparticles by mint look to take part in providing the compositional stability and consistency stability of the NPs.
Title: Environment-Friendly Synthesis of Copper Ferrite Nanoparticles and Their Characterizations
Description:
In green Nano biotechnology a number of methods are used to create nanoparticles via virus, microbes and plants.
Plant mediated synthesis is better than microbes due to its availability and nontoxic properties.
In this study we create Copper ferrite Nano particles by using mint extract by auto –combustion.
Traditional characterization techniques such as XRD, FTIR and VSM have been employed.
XRD verified the crystalline nature of copper ferrites.
The magnetic properties of Copper ferrite Nano particleshave been investigated by VSM, the analysis showed Copper ferrite Nano particles are paramagnetic in nature as it lacks remnant and coercivity.
FTIR analysis indicates the presence of phenolic contents as the stabilizing agent.
The peaks reveal the different functional groups.
The above mentioned results show ecofriendly synthesis of copper ferrite nanoparticles by mint look to take part in providing the compositional stability and consistency stability of the NPs.
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