4.6 Article

Highly ordered mesoporous magnesium niobate high-kappa dielectric ceramic: synthesis, structural/mechanical characterization and thermal stability

期刊

JOURNAL OF MATERIALS CHEMISTRY C
卷 1, 期 32, 页码 4948-4955

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c3tc30500g

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资金

  1. University of Sassari
  2. MIUR (Italian Ministry for University and Research)
  3. Spanish MINECO [MAT2011-27380-C02-01]
  4. Generalitat Catalunya [2009SGR129]
  5. ICREA ACADEMIA award
  6. ICREA Funding Source: Custom

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The synthesis of a highly ordered mesoporous ternary Mg-Nb oxide by the Evaporation Induced Self-Assembly (EISA) method is presented for the first time. The as-prepared material shows 2D-hexagonal pore periodicity, with unimodal pore size distribution centered at 5.5 nm, and a large surface area (169 m(2) g(-1)). The mechanical properties, determined by means of nanoindentation, are consistent with the presence of ordered domains of honeycomb-like hexagonal pore arrangements, in agreement with electron microscopy observations and N-2 sorption isotherm analyses. The dielectric constant of the mesoporous sample, measured at room temperature in the frequency range 1 kHz to 1 MHz, is rather high (kappa similar to 25 at 1 MHz) and correlates well with the k value of the bulk and the porosity level of this material. Moreover, the thermal stability of the mesoporous magnesium niobate is investigated after air-annealing treatments at different temperatures. While a significant decrease of the surface area is observed for T-ANN 650 degrees C, the mesostructure fully collapses after annealing at 800 degrees C.

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