Abstract

Alumina (Al2O3)-based diphasic aerogels have better physical properties than those of pure Al2O3 aerogel according to previous studies. In the present research, we focused on an alumina–titania (Al2O3-TiO2) diphasic aerogel. A series of Al2O3 aerogels were synthesized and studied with and without minor TiO2 dopants (up to 10 mol%). We found that the pure Al2O3 aerogel, which had the fiber-like particles, was stronger than those with TiO2 dopants that possessed the sphere-like particles. However, the sphere-like particles make the TiO2-doped Al2O3 aerogel (with 3 mol% TiO2) possessing the largest specific surface area (SSA) of 650 m2/g, much larger than that of the pure Al2O3 aerogel (326 m2/g). This work proved that fiber-like particles enhance strength but reduce SSA of Al2O3 aerogel. At last, ceramic fibers reinforced Al2O3 aerogel composites with the sizes of 20 cm width × 20 cm length × 1 cm thickness were fabricated. The aerogel composites possessed a thermal conductivity of 0.136 W/m K at 1000 °C, better than those of the ceramic fiber blankets itself (0.30 W/m K), indicating potential application as high-temperature thermal insulator.

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