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Pd的氧化与表面状态
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Oxidation and Surface Chemical Species of Palladium
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    摘要:

    采用热重分析仪(TG)和差热分析仪(DSC)测定海绵Pd试样从室温直至1200 ℃升温过程中的相对热量和质量变化;采用X射线光电子能谱(XPS)测定不同处理条件下Pd片材试样的表面状态。在吸热-放热曲线上观测到了PdO形成(260 ℃)、分解(720 ℃)和蒸发(877 ℃)等热效应。750 ℃以下Pd氧化是一个增重过程,而在更高温度下PdO的分解和蒸发导致失重。当Pd在高于850 ℃以上加热或淬火时,Pd呈Pd0化学态而保持光亮的金属表面;但是在低于此温度加热或淬火时,Pd表面因被PdO膜覆盖而呈暗晦色

    Abstract:

    Changes of the relative mass and heat absorption-heat evolution of palladium were measured by TG and DSC in a temperature rising process from room temperature to 1200 oC. The surface chemical species of palladium samples with different treatment systems were determined by XPS. For sponge palladium, a series of thermal effects, such as the formation, decomposition and evaporation of PdO at 260, 720 and 877 oC, respectively were observed on the heat absorption-heat evolution curves. The oxidation of palladium is a mass-gain process below 750 oC, and the decomposition and evaporation of PdO lead to mass loss at temperatures above 750 oC. When heated or quenched above 850 oC, Pd presents Pdo state and keep a bright metallic surface; while heated or quenched below 850 oC, Pd is coated by PdO and thus exhibits a dull color

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戴 红,宁远涛. Pd的氧化与表面状态[J].稀有金属材料与工程,2011,40(7):1256~1259.[Dai Hong, Ning Yuantao. Oxidation and Surface Chemical Species of Palladium[J]. Rare Metal Materials and Engineering,2011,40(7):1256~1259.]
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  • 收稿日期:2010-07-21
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