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First-Principle Study on the Oxidation Mechanism of Pt-Zr Alloy System under Oxygen Atmosphere
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    Abstract:

    The first-principles based on the density functional theory was applied to calculate the structure parameters, bond units and electronic structure of the oxidation mechanism for the Pt-Zr solid solution under high oxygen atmosphere. The calculated conclusions show that the structure parameter of the Pt-Zr solid solution was changed by the oxidation reaction of Pt-Zr, so that the expansion along c axis is larger than the b and c axis in the Pt-Zr solid solution. As the oxidation of Zr is stronger than Pt, the electrons on the 4d orbit of Zr combine the electrons on the 2p orbit of O to bond and form the oxide of Zr, but Pt just acts as a bridge function during the wholly oxidize process. It is also found that our calculated results are in good agreement with the experimental phenomenon

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[Pan Yong, Guan Weiming, Zhang Kunhua, Chen Jingchao, Chen Song. First-Principle Study on the Oxidation Mechanism of Pt-Zr Alloy System under Oxygen Atmosphere[J]. Rare Metal Materials and Engineering,2009,38(2):266~270.]
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  • Received:January 23,2008
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