首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Characterization of Oxidation and Reduction of a Palladium-Rhodium Alloy by Atom-Probe Tomography
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Characterization of Oxidation and Reduction of a Palladium-Rhodium Alloy by Atom-Probe Tomography

机译:原子探针层析成像法表征钯-铑合金的氧化和还原

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摘要

Platinum group metals (PGMs) are used in numerous catalyst applications, including conversion of engine exhaust gases and hydrocarbon reforming. Reducing the loading of PGMs without diminishing the overall catalyst activity is a major challenge. Fundamental studies of PGMs under reactive conditions can assist the design/synthesis of "nanoengineered" catalysts, tunable and optimized for cost, stability, and performance. In the present study, the oxidation and reduction behavior of a Pd-6.4 at. % Rh alloy is investigated following treatment at 873 K for various exposure times using atom-probe tomography. For short oxidation times (10 min), an oxide layer with PdO stoichiometry grows on the surface. As the oxidation time increases, two phases with stoichiometries of (Rh1Pd1)O2 and (Pd2O) evolve. When thealloy is subsequently reduced in hydrogen, a nanoscale dispersion of Rh-rich metallic regions remains. This provides a route for the synthesis of multifunctional catalysts with different nanosurface regions in close proximity to one another.
机译:铂族金属(PGM)用于许多催化剂应用中,包括发动机废气的转化和碳氢化合物的重整。减少PGM的负载而不降低总体催化剂活性是一个重大挑战。在反应条件下对PGM的基础研究可以协助“纳米工程”催化剂的设计/合成,这些催化剂可以进行调整并针对成本,稳定性和性能进行优化。在本研究中,Pd-6.4 at。的氧化和还原行为。使用原子探针层析成像技术在873 K下处理了各种曝光时间后,研究了%Rh合金。对于较短的氧化时间(10分钟),表面上会生长具有化学计量比的PdO的氧化层。随着氧化时间的增加,化学计量为(Rh1Pd1)O2和(Pd2O)的两相逐渐发展。当合金随后在氢气中还原时,保留了富Rh金属区域的纳米级分散体。这提供了合成具有彼此紧邻的不同纳米表面区域的多功能催化剂的途径。

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