Enhanced Activation Energy of Crystallization of Pure Zirconia Nanopowders Prepared via an Efficient Way of Synthesis Using NaBH4

An efficient way through borohydride synthesis route using NaBH4 was performed to prepare pure zirconia nanopowders via three different conditions such as gelation, precipitation, and constant pH. Zirconia powders prepared through constant pH route show highest activation energy of crystallization (...

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Veröffentlicht in:Journal of the American Ceramic Society 2013-11, Vol.96 (11), p.3366-3368
Hauptverfasser: Nayak, Nadiya B., Nayak, Bibhuti B., Mondal, Aparna
Format: Artikel
Sprache:eng
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Zusammenfassung:An efficient way through borohydride synthesis route using NaBH4 was performed to prepare pure zirconia nanopowders via three different conditions such as gelation, precipitation, and constant pH. Zirconia powders prepared through constant pH route show highest activation energy of crystallization (Ea = 260 kJ/mol) or higher exothermic peak temperature (717°C), when compared with gelation or precipitation route due to its controlled growth of smaller crystallites. The released huge amount of H2 gas bubbles during borohydride synthesis via constant pH route play a major role for formation of loose smaller crystallites and thus enhances the activation energy of crystallization of pure zirconia. So, the as‐prepared zirconia powders prepared through constant pH route remain amorphous up to 600°C and pure t‐ZrO2 (~20 nm) was stable up to 800°C.
ISSN:0002-7820
1551-2916
DOI:10.1111/jace.12605