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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Analysis of Atomic Force Microscopy Phase Data To Dynamically Detect Adsorbed Hydrogen under Ambient Conditions
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Analysis of Atomic Force Microscopy Phase Data To Dynamically Detect Adsorbed Hydrogen under Ambient Conditions

机译:原子力显微镜相数据分析在环境条件下动态检测吸附的氢

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Characterization of the interactions of hydrogen with catalytic metal surfaces and the mass transfer processes involved in heterogeneous catalysis are important for catalyst development. Although a range of technologies for studying catalytic surfaces exist, much of it relies on high-vacuum conditions that preclude in situ research. In contrast, atomic force microscopy (AFM) provides an opportunity for direct observation of surfaces under or near actual reaction conditions. Tapping-mode AFM was explored here because it expands AFM beyond the usual topographic information toward speciation and other more subtle surface information. This work describes using phase-angle information from tapping-mode AFM to follow the interactions of hydrogen with palladium, polycarbonate, and iron. Real-time AFM phase-angle information allowed for the observation of multiphase mass transfer to and from the surface of palladium at atmospheric pressure and room temperature without the need for complex sample preparation. The AFM observations are quantitatively benchmarked against and confirm mass transfer predictions based on bulk hydrogen diffusion data. Additionally, they support recent studies that demonstrate the existence of multiple hydrogen states during interactions with palladium surfaces.
机译:氢与催化金属表面的相互作用以及非均相催化中涉及的传质过程的表征对于催化剂的开发很重要。尽管存在用于研究催化表面的多种技术,但其中许多技术都依赖于高真空条件,因此无法进行原位研究。相反,原子力显微镜(AFM)为直接观察实际反应条件下或附近的表面提供了机会。此处探讨了攻牙模式原子力显微镜,因为它使原子力显微镜的范围从通常的地形信息扩展到了物种形成和其他更精细的表面信息。这项工作描述了使用来自分接模式AFM的相角信息来跟踪氢与钯,聚碳酸酯和铁的相互作用。实时AFM相角信息可用于在大气压和室温下观察与钯表面之间的多相质量转移,而无需进行复杂的样品制备。根据大量氢扩散数据,对AFM观测值进行定量基准测试,并确认传质预测。此外,他们支持最近的研究,这些研究证明了与钯表面相互作用期间存在多个氢态。

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