X-Ray Diffraction and Microstructure of Tin Dioxide with Addition of Fe

Preparation and characterization of tin dioxide, SnO2, had been carried out by precipitation process of SnCl2.2H2O in ammonia and aqua solutions with comparison of 1 : 7. FeCl3 was added to solution with variation of 0, 0,1, 0.2, 0.5 and 1.0 gram respectively and then sintered at 900°C. The X-ray di...

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Main Author: Posman Manurung
Format: Article
Language:English
Published: Fakultas MIPA Universitas Jember 2013-01-01
Series:Jurnal Ilmu Dasar
Subjects:
Online Access:https://jurnal.unej.ac.id/index.php/JID/article/view/359
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author Posman Manurung
author_facet Posman Manurung
author_sort Posman Manurung
collection DOAJ
description Preparation and characterization of tin dioxide, SnO2, had been carried out by precipitation process of SnCl2.2H2O in ammonia and aqua solutions with comparison of 1 : 7. FeCl3 was added to solution with variation of 0, 0,1, 0.2, 0.5 and 1.0 gram respectively and then sintered at 900°C. The X-ray diffraction (XRD) analysis shows that the intensity of diffraction increases with the addition of Fe. The addition of Fe does not cause the new phase. Generally, the Bragg angle is relative same for all samples that means Fe does not change significantly the cell parameters. Scanning electron microscopy (SEM) image shows the microstructure changed with the addition of Fe. On the small addition, the microstructure tends to oval and on the larger addition to plateau.
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spelling doaj.art-3ee1b08c08e2453893f650a3865956f62022-12-21T21:52:58ZengFakultas MIPA Universitas JemberJurnal Ilmu Dasar1411-57352442-56132013-01-011219196359X-Ray Diffraction and Microstructure of Tin Dioxide with Addition of FePosman ManurungPreparation and characterization of tin dioxide, SnO2, had been carried out by precipitation process of SnCl2.2H2O in ammonia and aqua solutions with comparison of 1 : 7. FeCl3 was added to solution with variation of 0, 0,1, 0.2, 0.5 and 1.0 gram respectively and then sintered at 900°C. The X-ray diffraction (XRD) analysis shows that the intensity of diffraction increases with the addition of Fe. The addition of Fe does not cause the new phase. Generally, the Bragg angle is relative same for all samples that means Fe does not change significantly the cell parameters. Scanning electron microscopy (SEM) image shows the microstructure changed with the addition of Fe. On the small addition, the microstructure tends to oval and on the larger addition to plateau.https://jurnal.unej.ac.id/index.php/JID/article/view/359tin dioxidediffractionmicrostructure
spellingShingle Posman Manurung
X-Ray Diffraction and Microstructure of Tin Dioxide with Addition of Fe
Jurnal Ilmu Dasar
tin dioxide
diffraction
microstructure
title X-Ray Diffraction and Microstructure of Tin Dioxide with Addition of Fe
title_full X-Ray Diffraction and Microstructure of Tin Dioxide with Addition of Fe
title_fullStr X-Ray Diffraction and Microstructure of Tin Dioxide with Addition of Fe
title_full_unstemmed X-Ray Diffraction and Microstructure of Tin Dioxide with Addition of Fe
title_short X-Ray Diffraction and Microstructure of Tin Dioxide with Addition of Fe
title_sort x ray diffraction and microstructure of tin dioxide with addition of fe
topic tin dioxide
diffraction
microstructure
url https://jurnal.unej.ac.id/index.php/JID/article/view/359
work_keys_str_mv AT posmanmanurung xraydiffractionandmicrostructureoftindioxidewithadditionoffe