Experimentally designed optimized conditions for catalytic performance of nanostructured RuO2 in Biginelli reaction

Nanostructured RuO2 powders were synthesized via a hydrothermal method at 180 °C for 12 h using 1 and 2 M NaOH aqueous solutions. The structure of the obtained nanomaterials was investigated by powder X-ray diffraction (PXRD) technique. The morphology the obtained materials were studied by field emi...

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Main Authors: F. Soleimani, M. Behzad, M. Salehi
Format: Article
Language:English
Published: Nanoscience and Nanotechnology Research Center, University of Kashan 2015-10-01
Series:Journal of Nanostructures
Subjects:
Online Access:http://jns.kashanu.ac.ir/article_12564_75e70df0162c40cb8e15ab689f57e7a6.pdf
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spelling doaj-3d6b03984f5c41eca37dc0e7117928542020-11-24T22:21:06ZengNanoscience and Nanotechnology Research Center, University of KashanJournal of Nanostructures2251-78712251-788X2015-10-015435136010.7508/jns.2015.04.00512564Experimentally designed optimized conditions for catalytic performance of nanostructured RuO2 in Biginelli reactionF. Soleimani0M. Behzad1M. Salehi2Department of chemistry, Semnan University, Semnan 35351-19111, IranDepartment of chemistry, Semnan University, Semnan 35351-19111, IranDepartment of chemistry, Semnan University, Semnan 35351-19111, IranNanostructured RuO2 powders were synthesized via a hydrothermal method at 180 °C for 12 h using 1 and 2 M NaOH aqueous solutions. The structure of the obtained nanomaterials was investigated by powder X-ray diffraction (PXRD) technique. The morphology the obtained materials were studied by field emission scanning electron microscope (FESEM). The technique showed that with changing the reaction rout, the homogeneity of the size and morphology of the synthesized nanomaterials were changed. It was found that the morphology of the obtained materials were spherical particles using 2 M NaOH aqueous solution. Catalytic performance of the synthesized nanomaterials was investigated in Biginelli reactions for the one-pot synthesis of 3,4-dihydropyrimidin-2(1H)-ones (DHPMs) using Benzaldehyde derivatives, urea and ethylacetoacetate as raw materials. Experimental design method was used to obtain optimized reaction conditions. It was found that the optimized conditions were 0.028 g of catalyst, 110 °C reaction temperature and 66 min reaction time.http://jns.kashanu.ac.ir/article_12564_75e70df0162c40cb8e15ab689f57e7a6.pdfHydrothermalRuthenium(IV) oxideBiginelliExperimental DesignNanocatalyst
collection DOAJ
language English
format Article
sources DOAJ
author F. Soleimani
M. Behzad
M. Salehi
spellingShingle F. Soleimani
M. Behzad
M. Salehi
Experimentally designed optimized conditions for catalytic performance of nanostructured RuO2 in Biginelli reaction
Journal of Nanostructures
Hydrothermal
Ruthenium(IV) oxide
Biginelli
Experimental Design
Nanocatalyst
author_facet F. Soleimani
M. Behzad
M. Salehi
author_sort F. Soleimani
title Experimentally designed optimized conditions for catalytic performance of nanostructured RuO2 in Biginelli reaction
title_short Experimentally designed optimized conditions for catalytic performance of nanostructured RuO2 in Biginelli reaction
title_full Experimentally designed optimized conditions for catalytic performance of nanostructured RuO2 in Biginelli reaction
title_fullStr Experimentally designed optimized conditions for catalytic performance of nanostructured RuO2 in Biginelli reaction
title_full_unstemmed Experimentally designed optimized conditions for catalytic performance of nanostructured RuO2 in Biginelli reaction
title_sort experimentally designed optimized conditions for catalytic performance of nanostructured ruo2 in biginelli reaction
publisher Nanoscience and Nanotechnology Research Center, University of Kashan
series Journal of Nanostructures
issn 2251-7871
2251-788X
publishDate 2015-10-01
description Nanostructured RuO2 powders were synthesized via a hydrothermal method at 180 °C for 12 h using 1 and 2 M NaOH aqueous solutions. The structure of the obtained nanomaterials was investigated by powder X-ray diffraction (PXRD) technique. The morphology the obtained materials were studied by field emission scanning electron microscope (FESEM). The technique showed that with changing the reaction rout, the homogeneity of the size and morphology of the synthesized nanomaterials were changed. It was found that the morphology of the obtained materials were spherical particles using 2 M NaOH aqueous solution. Catalytic performance of the synthesized nanomaterials was investigated in Biginelli reactions for the one-pot synthesis of 3,4-dihydropyrimidin-2(1H)-ones (DHPMs) using Benzaldehyde derivatives, urea and ethylacetoacetate as raw materials. Experimental design method was used to obtain optimized reaction conditions. It was found that the optimized conditions were 0.028 g of catalyst, 110 °C reaction temperature and 66 min reaction time.
topic Hydrothermal
Ruthenium(IV) oxide
Biginelli
Experimental Design
Nanocatalyst
url http://jns.kashanu.ac.ir/article_12564_75e70df0162c40cb8e15ab689f57e7a6.pdf
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