4.6 Article

Chemical synthesis of nanoscale Aurivillius ceramics, Bi2A2TiM2O12 (A = Ca, Sr, Ba and M = Nb, Ta)

期刊

JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY
卷 64, 期 3, 页码 612-618

出版社

SPRINGER
DOI: 10.1007/s10971-012-2892-6

关键词

Aurivillius ceramic; Polymerized complex method; In situ XRD; Kinetics

资金

  1. National Science Foundation [DMR 0606246, DMR 1120296]

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A group of three-layered Aurivillius compounds with composition Bi(2)A(2)TiM(2)O(12), where A = Ca, Sr, Ba and M = Nb and Ta, have been synthesized as nanoscale powders using two variants of the complex polymerization method. A new modified method is presented that yields single phase powders using reaction temperatures as low as 700 A degrees C and accommodates a wide range of chemical substitutions. The resulting crystallites have dimensions below 100 nm and surface area similar to 10 m(2)/g. In situ analysis of the decomposition of the polymeric precursor shows that the polymer yields a three-phase mixture consisting of Bi(2)A(2)TiM(2)O(12) and the metastable delta- and beta-polymorphs of Bi2O3 upon heating under flowing air. Full kinetics analysis of a 2-step solid state synthesis method was used to demonstrate that the crystallization of delta Bi2O3 in the sol-gel method greatly accelerates the conversion to the Aurivillius phase. The fluorite structure of delta Bi2O3 is the same as that of the [Bi2O2](2+) layer in the Aurivillius phase, facilitating rapid and low-temperature crystallization of the Aurivillius phase from the delta Bi2O3 template.

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