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High-Resolution Electron-Energy-Loss Spectroscopy and Photoelectron-Diffraction Studies of the Geometric Structure of Adsorbates on Single-Crystal Metal Surfaces

机译:单晶金属表面吸附物几何结构的高分辨率电子能量损失光谱和光电子衍射研究

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Two techniques which have made important contributions to the understanding of surface phenomena are high resolution electron energy loss spectroscopy (EELS) and photoelectron diffraction (PD). EELS is capable of directly measuring the vibrational modes of clean and adsorbate covered metal surfaces. In this work, the design, construction, and performance of a new EELS spectrometer are described. These results are discussed in terms of possible structures of the O-Cu(001) system. Recommendations for improvements in this EELS spectrometer and guidelines for future spectrometers are given. PD experiments provide accurate quantitative information about the geometry of atoms and molecules adsorbed on metal surfaces. The technique has advantages when used to study disordered overlayers, molecular overlayers, multiple site systems, and adsorbates which are weak electron scatterers. Four experiments were carried out which exploit these advantages. (ERA citation 08:007914)

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