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Selective Internal Oxidation of the Noble Metal-Rich Intermetallic Compound, BaAg5

机译:富含贵金属的金属间化合物BaAg5的选择性内部氧化

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Although the internal oxidation of noble metal-base solid solutions (particularly Ag-base alloys) has been examined extensively, no detailed studies have been reported on the exclusive internal oxidation of noble metal-rich intermetallic compounds. In this paper, the internal oxidation of a silver-rich compound, BaAg5, has been examined at 400°C in pure O2. Under these conditions, the BaAg5 was converted into a mixture of submicron barium-oxide particles in a silver matrix. Image analysis of the oxide content, and chemical analysis with an electron microprobe, revealed the absence of preferential barium segregation to the oxidized zone. Silver nodules were detected on the specimen surface, which was consistent with outward silver migration to relieve the stress associated with internal-oxide formation. Although the oxidation zone thickened at a parabolic rate, the measured rate was higher than expected from the Wagner model. The internal oxidation of BaAg5 is demonstrated to be a relatively simple means of synthesizing an intimate mixture of BaO2 and Ag for potential use in gas-phase catalysis.
机译:尽管已经对贵金属基固溶体(尤其是银基合金)的内部氧化进行了广泛的研究,但尚未对富贵金属间金属化合物的独家内部氧化进行详细研究。本文研究了富含银的化合物BaAg5 的内部氧化,该反应在400°C的纯氧气中进行。在这些条件下,BaAg5 转化为亚微米级氧化钡颗粒在银基质中的混合物。氧化物含量的图像分析和电子探针的化学分析表明,钡没有优先偏析到氧化区。在样品表面检测到银结节,这与向外的银迁移相一致,以减轻与内部氧化物形成相关的应力。尽管氧化区以抛物线速率变厚,但是测得的速率却比Wagner模型的预期值高。事实证明,BaAg5 的内部氧化是一种相对简单的合成BaO2 和Ag紧密混合物的方法,可用于气相催化。

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