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Differential scanning calorimetry and a thermogravimetric analysis of nanozirconia-based powder systems
Authors:A. V. Kanaki  S. P. Buyakova  S. A. Volkov  S. N. Kulkov
Affiliation:(1) Department of Chemistry, Quy Nhon University, 170 An Duong Vuong street, Quy Nhon City, Vietnam;(2) Division of Nano Sciences and Department of Chemistry, Ewha Womans University, 120-750 Seoul, Korea
Abstract:Results obtained from differential scanning calorimetry and a thermogravimetric analysis of zirconia-based nanocrystalline powder systems are presented. Heating is found to cause intense mass loss that increases with increase in the MgO content. Differential scanning calorimetry has revealed that the total energy expended for reactions involved in the powder heating process increases with increase in the MgO content. The heated powders are characterized by desorption of water. For 10 wt. % MgO, residual nitrates are seen to decompose into NO2, N2O, or NO.
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