BENZYLTRIMETHYLAMMONIUM CHLORIDE IMMERSION EFFECT ON PHYSICAL PROPERTIES OF TiO2 – Al203

Main Authors: Tursiloadi, Silvester, Hirashima, Hiroshi
Format: Article info application/pdf eJournal
Bahasa: ind
Terbitan: Center for Science & Technology of Advanced Materials - National Nuclear Energy Agency , 2019
Subjects:
Online Access: http://jurnal.batan.go.id/index.php/jsmi/article/view/5210
http://jurnal.batan.go.id/index.php/jsmi/article/view/5210/4525
ctrlnum article-5210
fullrecord <?xml version="1.0"?> <dc schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><title lang="id-ID">BENZYLTRIMETHYLAMMONIUM CHLORIDE IMMERSION EFFECT ON PHYSICAL PROPERTIES OF TiO2 &#x2013; Al203</title><creator>Tursiloadi, Silvester</creator><creator>Hirashima, Hiroshi</creator><subject lang="id-ID">Mesoporous TiO2 &#x2013; Al203, sol-gel method, surfactant</subject><description lang="id-ID">BENZYLTRIMETHYLAMMONIUM CHLORIDE IMMERSION EFFECT ON PHYSICAL PROPERTIES OF TiO2 &#x2013; Al2O3. Mesoporous TiO2 - Al2O3 powders have potential applications in catalysts or support catalysts. A novel method to control pore size of sol--gel by a cationic surfactant benzyltrimethylammonium chloride (BTAC) Immersion was investigated. The gels of TiO2- Al2O3 in molar ratio of 0.2 of TiO2, and 0.8 of Al2O3 were prepared by hydrolysis of aluminium sec-butoxide, Al(OC4H9sec)3 and titanium isopropoxide Ti(OC3H7iso)4 in an n-propanol solution with acid catalyst. The structures and porosities of the modified TiO2-A|2O3 was depended on the dimensions of surfactant, as long as the calcination was carried out at 500&#x2103; to avoid aggregation process during removal of excess BTAC. If the calcinations were carried out at 800&#x2103; no significant change of the pore volume of modified samples was remarkably not observed, even though formation of TiO2 rutile has been taken place. It indicated that samples modi&#xFB01;cation by initial immersion of gel into BTAC may avoid the sintering. These results suggest that during the calcinations TiO2, was segregated from the Al2O3 particles to form nuclei of rutile and was crystallized prior to formation of &#x3B1;- Al2O3. Therefore, the formation of rutile TiO2 induced the formation of &#x3B1;- Al2O3.</description><publisher lang="en-US">Center for Science &amp; Technology of Advanced Materials - National Nuclear Energy Agency</publisher><contributor lang="id-ID"/><date>2019-05-02</date><type>Journal:Article</type><type>Other:info:eu-repo/semantics/publishedVersion</type><type>Other:</type><type>File:application/pdf</type><identifier>http://jurnal.batan.go.id/index.php/jsmi/article/view/5210</identifier><identifier>10.17146/jusami.2004.5.2.5210</identifier><source lang="en-US">Jusami | Indonesian Journal of Materials Science; Vol 5, No 2: FEBRUARI 2004; 19 - 24</source><source lang="id-ID">Jurnal Sains Materi Indonesia; Vol 5, No 2: FEBRUARI 2004; 19 - 24</source><source>2614-087X</source><source>1411-1098</source><language>ind</language><relation>http://jurnal.batan.go.id/index.php/jsmi/article/view/5210/4525</relation><rights lang="en-US">Copyright (c) 2018 Jurnal Sains Materi Indonesia</rights><rights lang="en-US">http://creativecommons.org/licenses/by-nc-sa/4.0</rights><recordID>article-5210</recordID></dc>
language ind
format Journal:Article
Journal
Other:info:eu-repo/semantics/publishedVersion
Other
Other:
File:application/pdf
File
Journal:eJournal
author Tursiloadi, Silvester
Hirashima, Hiroshi
title BENZYLTRIMETHYLAMMONIUM CHLORIDE IMMERSION EFFECT ON PHYSICAL PROPERTIES OF TiO2 – Al203
publisher Center for Science & Technology of Advanced Materials - National Nuclear Energy Agency
publishDate 2019
topic Mesoporous TiO2 – Al203
sol-gel method
surfactant
url http://jurnal.batan.go.id/index.php/jsmi/article/view/5210
http://jurnal.batan.go.id/index.php/jsmi/article/view/5210/4525
contents BENZYLTRIMETHYLAMMONIUM CHLORIDE IMMERSION EFFECT ON PHYSICAL PROPERTIES OF TiO2 – Al2O3. Mesoporous TiO2 - Al2O3 powders have potential applications in catalysts or support catalysts. A novel method to control pore size of sol--gel by a cationic surfactant benzyltrimethylammonium chloride (BTAC) Immersion was investigated. The gels of TiO2- Al2O3 in molar ratio of 0.2 of TiO2, and 0.8 of Al2O3 were prepared by hydrolysis of aluminium sec-butoxide, Al(OC4H9sec)3 and titanium isopropoxide Ti(OC3H7iso)4 in an n-propanol solution with acid catalyst. The structures and porosities of the modified TiO2-A|2O3 was depended on the dimensions of surfactant, as long as the calcination was carried out at 500°C to avoid aggregation process during removal of excess BTAC. If the calcinations were carried out at 800°C no significant change of the pore volume of modified samples was remarkably not observed, even though formation of TiO2 rutile has been taken place. It indicated that samples modification by initial immersion of gel into BTAC may avoid the sintering. These results suggest that during the calcinations TiO2, was segregated from the Al2O3 particles to form nuclei of rutile and was crystallized prior to formation of α- Al2O3. Therefore, the formation of rutile TiO2 induced the formation of α- Al2O3.
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collection Jurnal Sains Materi Indonesia
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first_indexed 2019-05-03T16:13:10Z
last_indexed 2019-06-10T04:24:46Z
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