In depth study on growth aspects and characteristic properties of semiorganic nonlinear optical crystal: 4-Dimethylaminopyridine copper chloride

In this work we observed second harmonic nonlinear optical property in the grown 4-Dimethylaminopyridine copper chloride (4DMAPC) crystal. 4DMAPC appreciable size semiorganic non-linear optical crystal was grown by slow evaporation solution growth technique and the crystal was subjected to various c...

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Main Authors: J. Johnson, R. Srineevasan, D. Sivavishnu
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2019-08-01
Series:Materials Science for Energy Technologies
Online Access:http://www.sciencedirect.com/science/article/pii/S2589299118301447
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spelling doaj-3646b2ae0b8b4972ba65d2138626e5472021-04-02T13:44:09ZengKeAi Communications Co., Ltd.Materials Science for Energy Technologies2589-29912019-08-0122226233In depth study on growth aspects and characteristic properties of semiorganic nonlinear optical crystal: 4-Dimethylaminopyridine copper chlorideJ. Johnson0R. Srineevasan1D. Sivavishnu2Corresponding author.; PG & Research Department of Physics, Government Arts College, Tiruvannamalai 606 603, Tamilnadu, IndiaPG & Research Department of Physics, Government Arts College, Tiruvannamalai 606 603, Tamilnadu, IndiaPG & Research Department of Physics, Government Arts College, Tiruvannamalai 606 603, Tamilnadu, IndiaIn this work we observed second harmonic nonlinear optical property in the grown 4-Dimethylaminopyridine copper chloride (4DMAPC) crystal. 4DMAPC appreciable size semiorganic non-linear optical crystal was grown by slow evaporation solution growth technique and the crystal was subjected to various characterization studies to analysis their structural, optical, electrical and mechanical properties. Sharp peak pattern of 4DMAPC in powder XRD crystal confirms good crystalline nature. Single crystal XRD study gives the 4DMAPC crystal as a monoclinic system with cell parameter values, a = 12.02 Å, b = 12.55 Å and c = 14.54 Å. Functional groups and their various modes of vibration of 4DMAPC sample were identified from FTIR study. Linear optical study of 4DMAPC crystal shows good optical transparency in the entire UV-Visible-NIR region. Band gap energy of the crystal calculated from linear optical study and having the values about Eg = 4.1 eV. Dielectric values of dielectric constant and loss as a function of frequency with different temperatures were studied. Thermal analysis were carried out by TGA and DTA. Vickers microhardness study shows hardness number (Hv) again the increasing load. Energy dispersive X-Ray analysis (EDAX) confirms the metal and molecules of grown 4DMAPC crystal. Second harmonic generation (SHG) efficiency of 4DMAPC crystal is realized by Kurtz and Perry technique and compared with standard inorganic potassium dihydrogen phosphate (KDP). Keywords: Semiorganic NLO crystal, UV-Visible-NIR, Electrical properties, Thermal properties, Vickers hardnesshttp://www.sciencedirect.com/science/article/pii/S2589299118301447
collection DOAJ
language English
format Article
sources DOAJ
author J. Johnson
R. Srineevasan
D. Sivavishnu
spellingShingle J. Johnson
R. Srineevasan
D. Sivavishnu
In depth study on growth aspects and characteristic properties of semiorganic nonlinear optical crystal: 4-Dimethylaminopyridine copper chloride
Materials Science for Energy Technologies
author_facet J. Johnson
R. Srineevasan
D. Sivavishnu
author_sort J. Johnson
title In depth study on growth aspects and characteristic properties of semiorganic nonlinear optical crystal: 4-Dimethylaminopyridine copper chloride
title_short In depth study on growth aspects and characteristic properties of semiorganic nonlinear optical crystal: 4-Dimethylaminopyridine copper chloride
title_full In depth study on growth aspects and characteristic properties of semiorganic nonlinear optical crystal: 4-Dimethylaminopyridine copper chloride
title_fullStr In depth study on growth aspects and characteristic properties of semiorganic nonlinear optical crystal: 4-Dimethylaminopyridine copper chloride
title_full_unstemmed In depth study on growth aspects and characteristic properties of semiorganic nonlinear optical crystal: 4-Dimethylaminopyridine copper chloride
title_sort in depth study on growth aspects and characteristic properties of semiorganic nonlinear optical crystal: 4-dimethylaminopyridine copper chloride
publisher KeAi Communications Co., Ltd.
series Materials Science for Energy Technologies
issn 2589-2991
publishDate 2019-08-01
description In this work we observed second harmonic nonlinear optical property in the grown 4-Dimethylaminopyridine copper chloride (4DMAPC) crystal. 4DMAPC appreciable size semiorganic non-linear optical crystal was grown by slow evaporation solution growth technique and the crystal was subjected to various characterization studies to analysis their structural, optical, electrical and mechanical properties. Sharp peak pattern of 4DMAPC in powder XRD crystal confirms good crystalline nature. Single crystal XRD study gives the 4DMAPC crystal as a monoclinic system with cell parameter values, a = 12.02 Å, b = 12.55 Å and c = 14.54 Å. Functional groups and their various modes of vibration of 4DMAPC sample were identified from FTIR study. Linear optical study of 4DMAPC crystal shows good optical transparency in the entire UV-Visible-NIR region. Band gap energy of the crystal calculated from linear optical study and having the values about Eg = 4.1 eV. Dielectric values of dielectric constant and loss as a function of frequency with different temperatures were studied. Thermal analysis were carried out by TGA and DTA. Vickers microhardness study shows hardness number (Hv) again the increasing load. Energy dispersive X-Ray analysis (EDAX) confirms the metal and molecules of grown 4DMAPC crystal. Second harmonic generation (SHG) efficiency of 4DMAPC crystal is realized by Kurtz and Perry technique and compared with standard inorganic potassium dihydrogen phosphate (KDP). Keywords: Semiorganic NLO crystal, UV-Visible-NIR, Electrical properties, Thermal properties, Vickers hardness
url http://www.sciencedirect.com/science/article/pii/S2589299118301447
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