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Co-precipitation of low-agglomerated Y<inf>2</inf>W<inf>3</inf>O<inf>12</inf> nanoparticles: The effects of aging time, calcination temperature and surfactant addition
ArticleAbstract: Current methods for the synthesis of ceramic powders from the A2M3O12 family of thermomiotics cause,Palabras claves:A M O family 2 3 12, CTAB, Deagglomeration, Modified reverse-strike method, negative thermal expansionAutores:Marinkovic B.A., Marzano M., Patricia I. PontónFuentes:googlescopusCo-precipitation synthesis of Y<inf>2</inf>W<inf>3</inf>O<inf>12</inf> submicronic powder
ArticleAbstract: Synthesis of negative and near-zero thermal expansion powders with low degree of agglomeration is onPalabras claves:Powders: chemical preparation (A), Thermal expansion (C), X-ray methods (B)Autores:de Abreu M., Dosen A., Faro G., Marinkovic B.A., Patricia I. Pontón, Prisco L.P.Fuentes:googlescopusSolubility limit of Zn<sup>2+</sup> in low thermal expansion ZrMgMo<inf>3</inf>O<inf>12</inf> and its influence on phase transition temperature
ArticleAbstract: Low thermal expansion in ABM3O12 phases, such as ZrMgMo3O12, have drawn significant attention due toPalabras claves:A M O 2 3 12, In situ XRPD, negative thermal expansion, Thermal shock resistanceAutores:Garcia F., Johnson M.B., Madrid A., Marinkovic B.A., Patricia I. Pontón, White M.A.Fuentes:googlescopus