The L-Isoluecine doped Zinc Tris (thiourea) sulphate single crystals was grown by slow evaporation method. The unit cell parameters of the grown L-Isoluecine doped Zinc Tris (thiourea) sulphate single crystals are determined by single XRD. By FTIR analysis, the various functional groups of the grown L-Isoluecine doped Zinc Tris (thiourea) sulphate single crystal is determined. The optical properties of L-Isoleucine doped ZTS crystal is determined by UV-Vis spectral studies. The Florescence spectrum of L-Isoleucine doped ZTS crystal shows the strong emission in visible region at 555 nm. The hardness of the material L-Isoleucine doped ZTS is measured by Vicker's Hardness method. The SHG efficiency of the L-Isoleucine doped ZTS was confirmed by Kurtz powder technique.
The L-Cysteine doped Zinc (tris) thiourea sulphate single crystals was grown by the slow evaporation method. The single crystal XRD analysis is used to determine the unit cell parameters of the grown L-Cysteine doped Zinc (tris) thiourea sulphate single crystals. The various functional groups of the grown crystal are determined by using FTIR spectrum. The optical properties of L-Cysteine doped ZTS crystal is determined by UV-Vis spectral studies. The Florescence spectrum of L-Cysteine doped ZTS crystal exhibits the strong emission in the visible region at 565 nm. The SHG efficiency of the grown L-Cysteine doped Zinc (tris) thiourea sulphate single crystals was confirmed by Kurtz powder technique.
Single crystals of strontium chloride added with Nicotinic acid were grown from aqueous solution by slow evaporation technique. The grown crystals are characterized by using single crystal XRD, FTIR spectroscopy, optical transmission, mechanical and photoluminescence spectral studies. As a result Single crystal XRD studies exposed that the crystal belongs to tetragonal system. The FTIR studies help to identify the functional groups which are present in the crystals. The optical transmission analysis shows that the crystal is transparent in the entire visible region. The cut off wavelength is 275nm. The sample is also subjected to photoluminescence analysis. Hardness was measured by the Vickers's hardness tester. The diamagnetic behavior of the grown crystal is confirmed by vibrating sample magnetometer.
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