Please use this identifier to cite or link to this item: https://scholarbank.nus.edu.sg/handle/10635/95373
DC FieldValue
dc.titleUltrafine zirconia powders via microemulsion processing route
dc.contributor.authorFang, J.
dc.contributor.authorWang, J.
dc.contributor.authorNg, S.-C.
dc.contributor.authorChew, C.-H.
dc.contributor.authorGan, L.-M.
dc.date.accessioned2014-10-16T08:47:04Z
dc.date.available2014-10-16T08:47:04Z
dc.date.issued1997-07
dc.identifier.citationFang, J.,Wang, J.,Ng, S.-C.,Chew, C.-H.,Gan, L.-M. (1997-07). Ultrafine zirconia powders via microemulsion processing route. Nanostructured Materials 8 (4) : 499-505. ScholarBank@NUS Repository.
dc.identifier.issn09659773
dc.identifier.urihttp://scholarbank.nus.edu.sg/handle/10635/95373
dc.description.abstractNanosized zirconia powders have been prepared via inverse microemulsion processing routes, in which cyclohexane was used as the oil phase, mixed poly (oxyethylene)5 nonyl phenol ether(NP5) and poly (oxyethylene)9 nonyl phenol ether (NP9) as the non-ionic surfactant, and an aqueous solution containing zirconium oxynitrate solution as the water phase. The precipitation reaction between zirconium oxynitrate and oxalic acid to form zirconium oxalate was made to take place in the nanosized microemulsion domains. Subsequent calcination of the oxalate precursors at 600°C led to the formation of ultrafine zirconia powders. Two synthesis routes, namely, a single-microemulsion processing route and a double-microemulsion processing route, were studied and compared. © 1997 Acta Metallurgica Inc.
dc.sourceScopus
dc.typeArticle
dc.contributor.departmentCHEMISTRY
dc.contributor.departmentPHYSICS
dc.contributor.departmentMATERIALS SCIENCE
dc.description.sourcetitleNanostructured Materials
dc.description.volume8
dc.description.issue4
dc.description.page499-505
dc.description.codenNMAEE
dc.identifier.isiutNOT_IN_WOS
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