Please use this identifier to cite or link to this item: https://scholarbank.nus.edu.sg/handle/10635/95370
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dc.titleUltrafine barium titanate powders via microemulsion processing routes
dc.contributor.authorWang, J.
dc.contributor.authorFang, J.
dc.contributor.authorNg, S.-C.
dc.contributor.authorGan, L.-M.
dc.contributor.authorChew, C.-H.
dc.contributor.authorWang, X.
dc.contributor.authorShen, Z.
dc.date.accessioned2014-10-16T08:47:01Z
dc.date.available2014-10-16T08:47:01Z
dc.date.issued1999
dc.identifier.citationWang, J.,Fang, J.,Ng, S.-C.,Gan, L.-M.,Chew, C.-H.,Wang, X.,Shen, Z. (1999). Ultrafine barium titanate powders via microemulsion processing routes. Journal of the American Ceramic Society 82 (4) : 873-881. ScholarBank@NUS Repository.
dc.identifier.issn00027820
dc.identifier.urihttp://scholarbank.nus.edu.sg/handle/10635/95370
dc.description.abstractThree processing routes have been used to prepare barium titanate powders, namely conventional coprecipitation, single-microemulsion coprecipitation using diether oxalate as the precipitant, and double-microemulsion coprecipitation using oxalic acid as the precipitant. A single-phase perovskite barium titanate was obtained when the double-microemulsion-derived oxalate precursor was calcined for 2 h at a temperature of as low as 550 °C, compared to 600 °C required by the single-microemulsion-derived precursor. A calcination for 2 h at >700 °C was required for the conventionally coprecipitated precursor in order to develop a predominant barium titanate phase. It was, however, impossible to eliminate the residual TiO2 impurity phase by raising the calcination temperature, up to 1000 °C. The microemulsion-derived barium titanate powders also demonstrated much better powder characteristics, such as more refined crystallite and particle sizes and a much lower degree of particle agglomeration, than those of the conventionally coprecipitated powder, although they contained approximately 0.2 wt% BaCO3 as the impurity phase.
dc.sourceScopus
dc.typeArticle
dc.contributor.departmentCHEMISTRY
dc.contributor.departmentPHYSICS
dc.contributor.departmentMATERIALS SCIENCE
dc.description.sourcetitleJournal of the American Ceramic Society
dc.description.volume82
dc.description.issue4
dc.description.page873-881
dc.description.codenJACTA
dc.identifier.isiutNOT_IN_WOS
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