Preparation, characterization, and thermal stability of B2O3-ZrO2

Synthesis of the borate-based compound with ZrOCl2 to form B2O3-ZrO2 has been conducted. The compound was characterized by FT-IR spectrophotometer, X-ray diffraction, acidity and thermal stability test. The results showed that the FT-IR main vibration spectrum of B2O3-ZrO2 compound has appeared at w...

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Main Authors: Theresia Debora Simbolon, Risfidian Mohadi
Format: Article
Language:English
Published: Magister Program of Material Sciences, Graduate School of Universitas Sriwijaya 2017-04-01
Series:Science and Technology Indonesia
Online Access:http://sciencetechindonesia.com/index.php/jsti/article/view/20
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author Theresia Debora Simbolon
Risfidian Mohadi
author_facet Theresia Debora Simbolon
Risfidian Mohadi
author_sort Theresia Debora Simbolon
collection DOAJ
description Synthesis of the borate-based compound with ZrOCl2 to form B2O3-ZrO2 has been conducted. The compound was characterized by FT-IR spectrophotometer, X-ray diffraction, acidity and thermal stability test. The results showed that the FT-IR main vibration spectrum of B2O3-ZrO2 compound has appeared at wave number 401.2 cm-1 for Zr-O bonding vibration, 617.2 cm-1 for B-O-B bonding vibration and 910.4 cm-1 for B-O bonding vibration. The XRD diffraction pattern shows B2O3-ZrO2 compound has an amorphous structure. The FT-IR spectrum after saturated with ammonia and potentiometric titration indicates that the compound of B2O3-ZrO2 has acidic properties with a strong level of acidity. Thermal stability test shows that the B2O3-ZrO2 compounds have high stability on temperature with increasing crystallinity after the compound was heated at 700 °C. Keywords: B2O3-ZrO2, impregnation, thermal stability.
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spelling doaj.art-68212cb78cf549e89cf8ff05c486825b2024-03-02T11:01:39ZengMagister Program of Material Sciences, Graduate School of Universitas SriwijayaScience and Technology Indonesia2580-44052580-43912017-04-0122565810.26554/sti.2017.2.2.56-5820Preparation, characterization, and thermal stability of B2O3-ZrO2Theresia Debora SimbolonRisfidian MohadiSynthesis of the borate-based compound with ZrOCl2 to form B2O3-ZrO2 has been conducted. The compound was characterized by FT-IR spectrophotometer, X-ray diffraction, acidity and thermal stability test. The results showed that the FT-IR main vibration spectrum of B2O3-ZrO2 compound has appeared at wave number 401.2 cm-1 for Zr-O bonding vibration, 617.2 cm-1 for B-O-B bonding vibration and 910.4 cm-1 for B-O bonding vibration. The XRD diffraction pattern shows B2O3-ZrO2 compound has an amorphous structure. The FT-IR spectrum after saturated with ammonia and potentiometric titration indicates that the compound of B2O3-ZrO2 has acidic properties with a strong level of acidity. Thermal stability test shows that the B2O3-ZrO2 compounds have high stability on temperature with increasing crystallinity after the compound was heated at 700 °C. Keywords: B2O3-ZrO2, impregnation, thermal stability.http://sciencetechindonesia.com/index.php/jsti/article/view/20
spellingShingle Theresia Debora Simbolon
Risfidian Mohadi
Preparation, characterization, and thermal stability of B2O3-ZrO2
Science and Technology Indonesia
title Preparation, characterization, and thermal stability of B2O3-ZrO2
title_full Preparation, characterization, and thermal stability of B2O3-ZrO2
title_fullStr Preparation, characterization, and thermal stability of B2O3-ZrO2
title_full_unstemmed Preparation, characterization, and thermal stability of B2O3-ZrO2
title_short Preparation, characterization, and thermal stability of B2O3-ZrO2
title_sort preparation characterization and thermal stability of b2o3 zro2
url http://sciencetechindonesia.com/index.php/jsti/article/view/20
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AT risfidianmohadi preparationcharacterizationandthermalstabilityofb2o3zro2