SYNTHESIS AND CHARACTERIZATION OF PHOTOCATALYS Fe2O3 PILLARED MONTMORILLONITE DOPED TiO2 AND ITS APPLICATION FOR RHODAMINE B PHODODEGRADATION USING VISIBLE LIGHT IRRADIATION

A montmorillonite clay modified with semiconductor metal can act as a photocatalyst material. Montmorillonite clays were chosen because of their natural characteristics which are easily to be modified and have high specific surface area. This research aims to modify montmorillonite clay into photoca...

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Main Authors: D. A. D. N. Dewi, I N. Simpen, I W. Suarsa
Format: Article
Language:Indonesian
Published: Universitas Udayana 2020-02-01
Series:Jurnal Kimia (Journal of Chemistry)
Online Access:https://ojs.unud.ac.id/index.php/jchem/article/view/57169
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spelling doaj-cead69dddffc41bbaf71a873a698a62e2020-11-25T02:39:03ZindUniversitas UdayanaJurnal Kimia (Journal of Chemistry)1907-98502599-27402020-02-01828810.24843/JCHEM.2020.v14.i01.p1457169SYNTHESIS AND CHARACTERIZATION OF PHOTOCATALYS Fe2O3 PILLARED MONTMORILLONITE DOPED TiO2 AND ITS APPLICATION FOR RHODAMINE B PHODODEGRADATION USING VISIBLE LIGHT IRRADIATIOND. A. D. N. Dewi0I N. Simpen1I W. Suarsa2Program Studi Kimia FMIPA Universitas Udayana, Jimbaran, Bali, IndonesiaProgram Studi Kimia FMIPA Universitas Udayana, Jimbaran, Bali, IndonesiaProgram Studi Kimia FMIPA Universitas Udayana, Jimbaran, Bali, IndonesiaA montmorillonite clay modified with semiconductor metal can act as a photocatalyst material. Montmorillonite clays were chosen because of their natural characteristics which are easily to be modified and have high specific surface area. This research aims to modify montmorillonite clay into photocatalyst material. The montmorillonite clay was intercalated using Fe2O3 to produce Fe2O3-pillared montmorillonite clay, then doped with TiO2 to form a photocatalyst material Fe2O3-PILC / TiO2. Modifications were intended to increase the specific surface area and number of active photocatalyst sites and thus increase the ability of photodegradation. The characterization carried out included characterizing the pillar formation using X-ray Diffraction (XRD), specific surface area by the BET method (Bruneau, Emmet, and Teller), a the number of surface acid-base sites by the titration method. Photocatalyst with the best character was Fe2O3-PILC / TiO2 1: 3 with specific surface area, number of acid and base sites respectively 45,947 m2/g, 20,1736 x 1023 sites/gram and 19,0044 x 1023 sites/gram. The result of photodegradation at optimum condition with visible light at pH 3 using 400 mg photocatalyst was 99.84%.   Keywords: photocatalyst, Fe2O3, montmorillonite clay, TiO2, rhodamine Bhttps://ojs.unud.ac.id/index.php/jchem/article/view/57169
collection DOAJ
language Indonesian
format Article
sources DOAJ
author D. A. D. N. Dewi
I N. Simpen
I W. Suarsa
spellingShingle D. A. D. N. Dewi
I N. Simpen
I W. Suarsa
SYNTHESIS AND CHARACTERIZATION OF PHOTOCATALYS Fe2O3 PILLARED MONTMORILLONITE DOPED TiO2 AND ITS APPLICATION FOR RHODAMINE B PHODODEGRADATION USING VISIBLE LIGHT IRRADIATION
Jurnal Kimia (Journal of Chemistry)
author_facet D. A. D. N. Dewi
I N. Simpen
I W. Suarsa
author_sort D. A. D. N. Dewi
title SYNTHESIS AND CHARACTERIZATION OF PHOTOCATALYS Fe2O3 PILLARED MONTMORILLONITE DOPED TiO2 AND ITS APPLICATION FOR RHODAMINE B PHODODEGRADATION USING VISIBLE LIGHT IRRADIATION
title_short SYNTHESIS AND CHARACTERIZATION OF PHOTOCATALYS Fe2O3 PILLARED MONTMORILLONITE DOPED TiO2 AND ITS APPLICATION FOR RHODAMINE B PHODODEGRADATION USING VISIBLE LIGHT IRRADIATION
title_full SYNTHESIS AND CHARACTERIZATION OF PHOTOCATALYS Fe2O3 PILLARED MONTMORILLONITE DOPED TiO2 AND ITS APPLICATION FOR RHODAMINE B PHODODEGRADATION USING VISIBLE LIGHT IRRADIATION
title_fullStr SYNTHESIS AND CHARACTERIZATION OF PHOTOCATALYS Fe2O3 PILLARED MONTMORILLONITE DOPED TiO2 AND ITS APPLICATION FOR RHODAMINE B PHODODEGRADATION USING VISIBLE LIGHT IRRADIATION
title_full_unstemmed SYNTHESIS AND CHARACTERIZATION OF PHOTOCATALYS Fe2O3 PILLARED MONTMORILLONITE DOPED TiO2 AND ITS APPLICATION FOR RHODAMINE B PHODODEGRADATION USING VISIBLE LIGHT IRRADIATION
title_sort synthesis and characterization of photocatalys fe2o3 pillared montmorillonite doped tio2 and its application for rhodamine b phododegradation using visible light irradiation
publisher Universitas Udayana
series Jurnal Kimia (Journal of Chemistry)
issn 1907-9850
2599-2740
publishDate 2020-02-01
description A montmorillonite clay modified with semiconductor metal can act as a photocatalyst material. Montmorillonite clays were chosen because of their natural characteristics which are easily to be modified and have high specific surface area. This research aims to modify montmorillonite clay into photocatalyst material. The montmorillonite clay was intercalated using Fe2O3 to produce Fe2O3-pillared montmorillonite clay, then doped with TiO2 to form a photocatalyst material Fe2O3-PILC / TiO2. Modifications were intended to increase the specific surface area and number of active photocatalyst sites and thus increase the ability of photodegradation. The characterization carried out included characterizing the pillar formation using X-ray Diffraction (XRD), specific surface area by the BET method (Bruneau, Emmet, and Teller), a the number of surface acid-base sites by the titration method. Photocatalyst with the best character was Fe2O3-PILC / TiO2 1: 3 with specific surface area, number of acid and base sites respectively 45,947 m2/g, 20,1736 x 1023 sites/gram and 19,0044 x 1023 sites/gram. The result of photodegradation at optimum condition with visible light at pH 3 using 400 mg photocatalyst was 99.84%.   Keywords: photocatalyst, Fe2O3, montmorillonite clay, TiO2, rhodamine B
url https://ojs.unud.ac.id/index.php/jchem/article/view/57169
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AT insimpen synthesisandcharacterizationofphotocatalysfe2o3pillaredmontmorillonitedopedtio2anditsapplicationforrhodaminebphododegradationusingvisiblelightirradiation
AT iwsuarsa synthesisandcharacterizationofphotocatalysfe2o3pillaredmontmorillonitedopedtio2anditsapplicationforrhodaminebphododegradationusingvisiblelightirradiation
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