MORPHOLOGICAL AND OPTOSTRUCTURAL STUDIES ON HYDRAZINE HYDRATE ASSISTED Zr(SeO3)2 NANOPARTICLES

Zirconium diselenite (Zr(SeO3)2) nanoparticles have been prepared by precipitation method using ZrO(NO3)2.xH2O and SeO2 with Hydrazine hydrate and vary the temperature. The obtained samples were characterised by using XRD, FTIR, FESEM and optical analysis. The XRD study shows the orthorhombic crysta...

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Autores principales: HENRY,J, MOHANRAJ,K, KANNAN,S, BARATHAN,S, SIVAKUMAR,G
Lenguaje:English
Publicado: Sociedad Chilena de Química 2013
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XRD
Acceso en línea:http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072013000200026
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spelling oai:scielo:S0717-970720130002000262014-09-09MORPHOLOGICAL AND OPTOSTRUCTURAL STUDIES ON HYDRAZINE HYDRATE ASSISTED Zr(SeO3)2 NANOPARTICLESHENRY,JMOHANRAJ,KKANNAN,SBARATHAN,SSIVAKUMAR,G Zirconium diselenite Hydrazine hydrate XRD FTIR FESEM Zirconium diselenite (Zr(SeO3)2) nanoparticles have been prepared by precipitation method using ZrO(NO3)2.xH2O and SeO2 with Hydrazine hydrate and vary the temperature. The obtained samples were characterised by using XRD, FTIR, FESEM and optical analysis. The XRD study shows the orthorhombic crystalline structure and particle sizes is found to be 78.06, 42.13 and 27.17 nm for 0.25:1, 0.5:1 and 0.75:1M respectively. FTIR results are confirmed the Zr(SeO3)2 at 885 cm-1, 739 cm-1 and 491 cm-1. FESEM images provide different shapes such as cubic and hexagonal of Zr(SeO3)2. Maximum absorption is found around 387 nm and the percentage of optical absorption is increased in the entire visible region when the molar concentration of zirconium decreases. The average band gap energy of the samples are found to be 3.95±2 eV. It is observed that the optical absorption is higher in the hydrazine hydrate assisted samples.info:eu-repo/semantics/openAccessSociedad Chilena de QuímicaJournal of the Chilean Chemical Society v.58 n.2 20132013-01-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072013000200026en10.4067/S0717-97072013000200026
institution Scielo Chile
collection Scielo Chile
language English
topic Zirconium diselenite
Hydrazine hydrate
XRD
FTIR
FESEM
spellingShingle Zirconium diselenite
Hydrazine hydrate
XRD
FTIR
FESEM
HENRY,J
MOHANRAJ,K
KANNAN,S
BARATHAN,S
SIVAKUMAR,G
MORPHOLOGICAL AND OPTOSTRUCTURAL STUDIES ON HYDRAZINE HYDRATE ASSISTED Zr(SeO3)2 NANOPARTICLES
description Zirconium diselenite (Zr(SeO3)2) nanoparticles have been prepared by precipitation method using ZrO(NO3)2.xH2O and SeO2 with Hydrazine hydrate and vary the temperature. The obtained samples were characterised by using XRD, FTIR, FESEM and optical analysis. The XRD study shows the orthorhombic crystalline structure and particle sizes is found to be 78.06, 42.13 and 27.17 nm for 0.25:1, 0.5:1 and 0.75:1M respectively. FTIR results are confirmed the Zr(SeO3)2 at 885 cm-1, 739 cm-1 and 491 cm-1. FESEM images provide different shapes such as cubic and hexagonal of Zr(SeO3)2. Maximum absorption is found around 387 nm and the percentage of optical absorption is increased in the entire visible region when the molar concentration of zirconium decreases. The average band gap energy of the samples are found to be 3.95±2 eV. It is observed that the optical absorption is higher in the hydrazine hydrate assisted samples.
author HENRY,J
MOHANRAJ,K
KANNAN,S
BARATHAN,S
SIVAKUMAR,G
author_facet HENRY,J
MOHANRAJ,K
KANNAN,S
BARATHAN,S
SIVAKUMAR,G
author_sort HENRY,J
title MORPHOLOGICAL AND OPTOSTRUCTURAL STUDIES ON HYDRAZINE HYDRATE ASSISTED Zr(SeO3)2 NANOPARTICLES
title_short MORPHOLOGICAL AND OPTOSTRUCTURAL STUDIES ON HYDRAZINE HYDRATE ASSISTED Zr(SeO3)2 NANOPARTICLES
title_full MORPHOLOGICAL AND OPTOSTRUCTURAL STUDIES ON HYDRAZINE HYDRATE ASSISTED Zr(SeO3)2 NANOPARTICLES
title_fullStr MORPHOLOGICAL AND OPTOSTRUCTURAL STUDIES ON HYDRAZINE HYDRATE ASSISTED Zr(SeO3)2 NANOPARTICLES
title_full_unstemmed MORPHOLOGICAL AND OPTOSTRUCTURAL STUDIES ON HYDRAZINE HYDRATE ASSISTED Zr(SeO3)2 NANOPARTICLES
title_sort morphological and optostructural studies on hydrazine hydrate assisted zr(seo3)2 nanoparticles
publisher Sociedad Chilena de Química
publishDate 2013
url http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072013000200026
work_keys_str_mv AT henryj morphologicalandoptostructuralstudiesonhydrazinehydrateassistedzrseo32nanoparticles
AT mohanrajk morphologicalandoptostructuralstudiesonhydrazinehydrateassistedzrseo32nanoparticles
AT kannans morphologicalandoptostructuralstudiesonhydrazinehydrateassistedzrseo32nanoparticles
AT barathans morphologicalandoptostructuralstudiesonhydrazinehydrateassistedzrseo32nanoparticles
AT sivakumarg morphologicalandoptostructuralstudiesonhydrazinehydrateassistedzrseo32nanoparticles
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