Semi-organic nonlinear optical material: (((4-sulfonatophenyl)ammonio)oxy)zirconium for dielectric and photonics applications

This article discusses the growth and characterization of (((4-sulfonatophenyl) ammonio)oxy) zirconium (SAOZ) single crystals. Sulphanilic acid incorporated zirconium oxychloride semi-organic single crystals have been synthesized by slow evaporation technique. From the X-ray studies, lattice paramet...

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Main Authors: Vinoth E., Vetrivel S., Gopinath S.
Format: Article
Language:English
Published: Sciendo 2020-09-01
Series:Materials Science-Poland
Subjects:
Online Access:http://www.degruyter.com/view/j/msp.2018.38.issue-3/msp-2020-0055/msp-2020-0055.xml?format=INT
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spelling doaj-f240a029d4474d2295c77994dff16eef2021-01-10T14:30:47ZengSciendoMaterials Science-Poland2083-134X2020-09-0138343444210.2478/msp-2020-0055msp-2020-0055Semi-organic nonlinear optical material: (((4-sulfonatophenyl)ammonio)oxy)zirconium for dielectric and photonics applicationsVinoth E.0Vetrivel S.1Gopinath S.2Raman Research Laboratory, Post Graduate and Research Department of Physics, Government Arts College, Tiruvannamalai, 606 603, Tamilnadu, IndiaRaman Research Laboratory, Post Graduate and Research Department of Physics, Government Arts College, Tiruvannamalai, 606 603, Tamilnadu, IndiaRaman Research Laboratory, Post Graduate and Research Department of Physics, Government Arts College, Tiruvannamalai, 606 603, Tamilnadu, IndiaThis article discusses the growth and characterization of (((4-sulfonatophenyl) ammonio)oxy) zirconium (SAOZ) single crystals. Sulphanilic acid incorporated zirconium oxychloride semi-organic single crystals have been synthesized by slow evaporation technique. From the X-ray studies, lattice parameters a = 7.31 Å, b = 7.51 Å, c = 13.92 Å, volume = 765 Å3 have been found and so the crystal has been identified as orthorhombic with non-centrosymmetric space group P212121. The powder XRD examination demonstrated the quality and high crystalline nature of the grown crystal. The presence of functional groups was confirmed by FT-IR technique. The chemical structure of the compound was established by 1H and 13C NMR spectra. The optical transmittance window and the low cutoff wavelength of SAOZ have been identified by UV-Vis-NIR studies. Photoluminescence studies showed a wide blue light emission. TG and DTA examinations were carried out to characterize the thermal behavior of the grown crystal. The mechanical strength of the grown crystal was analyzed by the Vickers microhardness test. The elemental analysis was done by EDAX. The dielectric response of the crystals was analyzed in the frequency range of 50 Hz to 5 MHz at various temperatures and the outcomes were discussed. The SHG efficiency was estimated in correlation with KDP by employing powder Kurtz method.http://www.degruyter.com/view/j/msp.2018.38.issue-3/msp-2020-0055/msp-2020-0055.xml?format=INTslow evaporationshg efficiencysoft materialdielectricnonlinear optical
collection DOAJ
language English
format Article
sources DOAJ
author Vinoth E.
Vetrivel S.
Gopinath S.
spellingShingle Vinoth E.
Vetrivel S.
Gopinath S.
Semi-organic nonlinear optical material: (((4-sulfonatophenyl)ammonio)oxy)zirconium for dielectric and photonics applications
Materials Science-Poland
slow evaporation
shg efficiency
soft material
dielectric
nonlinear optical
author_facet Vinoth E.
Vetrivel S.
Gopinath S.
author_sort Vinoth E.
title Semi-organic nonlinear optical material: (((4-sulfonatophenyl)ammonio)oxy)zirconium for dielectric and photonics applications
title_short Semi-organic nonlinear optical material: (((4-sulfonatophenyl)ammonio)oxy)zirconium for dielectric and photonics applications
title_full Semi-organic nonlinear optical material: (((4-sulfonatophenyl)ammonio)oxy)zirconium for dielectric and photonics applications
title_fullStr Semi-organic nonlinear optical material: (((4-sulfonatophenyl)ammonio)oxy)zirconium for dielectric and photonics applications
title_full_unstemmed Semi-organic nonlinear optical material: (((4-sulfonatophenyl)ammonio)oxy)zirconium for dielectric and photonics applications
title_sort semi-organic nonlinear optical material: (((4-sulfonatophenyl)ammonio)oxy)zirconium for dielectric and photonics applications
publisher Sciendo
series Materials Science-Poland
issn 2083-134X
publishDate 2020-09-01
description This article discusses the growth and characterization of (((4-sulfonatophenyl) ammonio)oxy) zirconium (SAOZ) single crystals. Sulphanilic acid incorporated zirconium oxychloride semi-organic single crystals have been synthesized by slow evaporation technique. From the X-ray studies, lattice parameters a = 7.31 Å, b = 7.51 Å, c = 13.92 Å, volume = 765 Å3 have been found and so the crystal has been identified as orthorhombic with non-centrosymmetric space group P212121. The powder XRD examination demonstrated the quality and high crystalline nature of the grown crystal. The presence of functional groups was confirmed by FT-IR technique. The chemical structure of the compound was established by 1H and 13C NMR spectra. The optical transmittance window and the low cutoff wavelength of SAOZ have been identified by UV-Vis-NIR studies. Photoluminescence studies showed a wide blue light emission. TG and DTA examinations were carried out to characterize the thermal behavior of the grown crystal. The mechanical strength of the grown crystal was analyzed by the Vickers microhardness test. The elemental analysis was done by EDAX. The dielectric response of the crystals was analyzed in the frequency range of 50 Hz to 5 MHz at various temperatures and the outcomes were discussed. The SHG efficiency was estimated in correlation with KDP by employing powder Kurtz method.
topic slow evaporation
shg efficiency
soft material
dielectric
nonlinear optical
url http://www.degruyter.com/view/j/msp.2018.38.issue-3/msp-2020-0055/msp-2020-0055.xml?format=INT
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AT vetrivels semiorganicnonlinearopticalmaterial4sulfonatophenylammoniooxyzirconiumfordielectricandphotonicsapplications
AT gopinaths semiorganicnonlinearopticalmaterial4sulfonatophenylammoniooxyzirconiumfordielectricandphotonicsapplications
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