Publications by authors named "C Inmozhi"

The titanium dioxide (TiO) nanoparticles were prepared by hydrothermal methods at ambient temperature. Based on XRD analysis, the average crystallite size of pure TiO nanoparticles and those doped with ZnS was calculated to be 58 and 54 nm, respectively. At an angle of 25.

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In this study, silver sulfide nanoparticles (AgSNP's) were successfully produced by using fruit extracts of Phyllanthus emblica. UV-vis, FTIR, XRD with SEM and EDX techniques were used for the synthesis process and for characterization of the resulting nanostructures. According to the findings, the fabricated nanostructure had a monoclinic crystal structure, measuring 44 nm in grain size, and its strain was 1.

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Surfactant -treated tin oxide (SnO) hierarchical nanorods were successfully synthesized through hydrothermal technique. The X-ray diffraction analysis showed the prepared SnO possesses tetragonal rutile structure having appreciable crystallinity with crystallite sizes in the range of 110 nm-120 nm. UV-visible diffuse reflectance absorption spectra confirm that the better visible light absorption band of SnO hierarchical nanorods have red shift compared to the pure SnO.

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Sn-doped MnO were synthesized as an oxidant, a mediator of maleic acid (CHO) and SnCl as doping ingredient via a basic sol-gel reaction with KMnO. XRD study signposts that tetragonal crystal structure of MnO (ICDD#44-0141) with a plane group of 12/m (87) for both pure and Sn doped MnO nanostructures. The photocatalyst synthesized has mesoporosity, allowing to the N adsorption/desorption experiments.

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A modest sol-gel method has been employed to prepare the pure and Ag doped MnO nanoparticles and methodologically studied their physical, morphological, and photosensitive properties through XRD, TEM, EDAX, Raman, UV, PL and N adsorption - desorption study. Tetragonal crystalline arrangement with spherical nanoparticles was found out through XRD and TEM studies. The EDAX studies further supported that formation Ag in the MnO crystal matrix.

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