Growth kinetics of tetragonal and monoclinic ZrO2 crystallites in 3 mol% yttria partially stabilized ZrO2 (3Y-PSZ) precursor powder
Growth kinetics of tetragonal and monoclinic ZrO2 crystallites in 3 mol% yttria partially stabilized ZrO2 (3Y-PSZ) precursor powder
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DOI:
10.1016/j.jallcom.2014.01.019
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发表时间:
2014-04
影响因子:
6.2
通讯作者:
Chih-Wei Kuo;K. Lee;F. Yen;Yun-Hwei Shen;Huey-Er Lee;S. Wen;Moo-Chin Wang;M. Stack
中科院分区:
文献类型:
--
作者:
Chih-Wei Kuo;K. Lee;F. Yen;Yun-Hwei Shen;Huey-Er Lee;S. Wen;Moo-Chin Wang;M. Stack
The growth kinetics of tetragonal and monoclinic ZrO 2 crystallites in 3 mol% yttria partially stabilized ZrO 2 (3Y-PSZ) precursor powder has been investigated using X-ray diffraction (XRD), Brunauer–Emmett–Teller (BET) specific surface area analysis, transmission electron microscopy (TEM) and high resolution TEM (HRTEM). After calcination of the 3Y-PSZ precursor powder between 773 and 1073 K for 2 h, the crystalline structures were composed of tetragonal and monoclinic ZrO 2 as the primary and secondary phases, respectively. When the 3Y-PSZ precursor powder was calcined at 773 K for 2 h, the BET specific surface area was 97.13 m 2/g, which is equivalent to a particle size of 10.30 nm. The crystallite sizes determined via XRD and BET agreed well, indicating that the powder was virtually non-agglomerated. The growth kinetics of tetragonal and monoclinic ZrO 2 crystallite isothermal growth in the 3Y-PSZ precursor powder are described by: D te 2=(4.57±0.55) t 0.12±0.02 exp (-(24.79±0.38)× 10 3 RT) and D m 2=(4.40±1.63) t 0.17±0.08 exp (-(66.47±3.97)× 10 3 RT), respectively, for 773 K≤ T≤ 1073 K. D te and D m denote the crystallite size of tetragonal and monoclinic ZrO 2 at time t and temperature T, respectively.