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dc.contributor.authorSreeremya, T S-
dc.contributor.authorAsha Krishnan-
dc.contributor.authorRemani, K C-
dc.contributor.authorPatil, K R-
dc.contributor.authorBrougham, D F-
dc.contributor.authorGhosh, S K-
dc.date.accessioned2015-08-04T04:57:56Z-
dc.date.available2015-08-04T04:57:56Z-
dc.date.issued2015-
dc.identifier.citationACS Applied Materials & Interfaces 7(16):8545-8555;29 Apr 2015en_US
dc.identifier.issn1944-8244-
dc.identifier.urihttp://ir.niist.res.in:8080/jspui/handle/123456789/1865-
dc.description.abstractThe catalytic performance of a range of nanocrystalline CeO2 samples, prepared to have different morphologies, was measured using two accepted indicators; oxygen storage and diesel soot combustion. The same powders were characterized hi detail by HR-TEM, XRD, XPS, and Raman methods. The study demonstrates that activity is determined by the relative fraction of the active crystallographic planes, not by the specific surface area of the powders. The physical study is a step toward quantitative evaluation of the relative contribution to activity of the different facets. The synthetic protocol permits fabrication of CeO2 nanostructures with preferentially grown active planes, and therefore has potential in developing catalytic applications and in nanocompositing.en_US
dc.language.isoenen_US
dc.publisherAmerican Chemical Societyen_US
dc.subjectCeriaen_US
dc.subjectNanocrystalsen_US
dc.subjectCrystal facetsen_US
dc.subjectTexture coefficienten_US
dc.titleShape-selective oriented Cerium oxide nanocrystals permit assessment of the effect of the exposed facets on catalytic activity and oxygen storage capacityen_US
dc.typeArticleen_US
Appears in Collections:2015

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