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3D atom probe study of gas adsorption and reaction on alloy catalyst surfaces I: Instrumentation

机译:合金催化剂表面气体吸附和反应的3D原子探针研究I:仪器

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A versatile gas reaction cell has been developed for a 3D atom probe system to provide a new method for studying the reaction mechanisms of heterogeneous catalysis. We describe the features and advantages of this new system. The reaction cell enables exposure of metal specimens in high temperature (<= 873 K) and high pressure (<= 1 bar) environments to a wide range of single gases or gas mixtures. Following treatment, specimens are transferred into the UHV analysis chamber of the 3D atom probe, which provides atomic-scale positional and chemical information for adsorbed gas and metal atoms/oxides from selected regions of the specimen apex. Results demonstrating the effects of heating alloy catalysts in vacuo and in air are presented, which validate the instrument design, alongside a sample of data for exposing Pt and Pt-Rh alloys to NO, revealing the power of the 3D atom probe technique in this field. (c) 2006 Elsevier B.V. All rights reserved.
机译:已开发出一种用于3D原子探针系统的通用气体反应池,以提供一种研究异相催化反应机理的新方法。我们描述了这个新系统的特点和优势。该反应池可以使金属样品在高温(<= 873 K)和高压(<= 1 bar)环境中暴露于各种单一气体或气体混合物中。处理后,将样品转移到3D原子探针的UHV分析室中,该室为来自样品顶点选定区域的吸附气体和金属原子/氧化物提供原子级的位置和化学信息。展示了在真空和空气中加热合金催化剂的效果的结果,这些结果验证了仪器的设计,同时还提供了将Pt和Pt-Rh合金暴露于NO的数据样本,从而揭示了3D原子探针技术在该领域的实力。 (c)2006 Elsevier B.V.保留所有权利。

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