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Structural studies of alkali metal adsorption and coadsorption on metal surfaces

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TLDR
A review of recent studies of adsorption and coadsorption using specifically structural techniques can be found in this paper, with the intention of highlighting recent developments, providing a useful reference base to the community, and drawing attention to some unifying concepts.
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This article is published in Surface Science Reports.The article was published on 1996-01-01. It has received 273 citations till now. The article focuses on the topics: Adsorption.

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The Interaction of Water with Solid Surfaces: Fundamental Aspects Revisited

TL;DR: A review of the fundamental interactions of water with solid surfaces can be found in this paper, where the authors assimilated the results of the TM review with those covered by the authors to provide a current picture of water interactions on solid surfaces, such as how water adsorbs, what are the chemical and electrostatic forces that constitute the adsorbed layer, how is water thermally or non-thermally activated and how do coadsorbates influence these properties of water.
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Control of the charge state of metal atoms on thin MgO films.

TL;DR: The long-range ordering as well as the scanning tunneling microscopy appearance of single Au atoms on a 3 monolayer thin MgO film can be explained by partial charge transfer from the substrate to Au atoms as predicted recently by density functional theory calculations.
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Organic chemistry on solid surfaces

TL;DR: In this article, the chemical reactions of organic molecules and fragments on solid surfaces, mainly on single crystals of metals but also on crystals of metal oxides, carbides, nitrides, phosphides, sulfides and semiconductors as well as on more complex models such as bimetallics, alloys, and supported particles, are reviewed.
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Electronic Excitations in Metals and at Metal Surfaces

TL;DR: This work presents a probabilistic simulation of the response of the immune system to various types of collisions and shows clear patterns of response to different types of materials.
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Properties of oxide thin films and their adsorption behavior studied by scanning tunneling microscopy and conductance spectroscopy

TL;DR: In this article, a survey of state-of-the-art scanning tunneling microscopy (STM) experiments aiming at an investigation of surface properties of oxide materials as well as their interaction with individual adatoms, molecules and metal particles is presented.
References
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X-ray photoelectron diffraction investigation of the (2 × 2) overlayers of Cs and K on Cu(111)

TL;DR: In this article, X-ray photoelectron diffraction measurements have been made for the Cu(111)(2 × 2)-Cs and Cu(1.5 ) 2 × 2-K systems to explore the possibility of using substrate emission XPD for the elucidation of adsorbate-substrate registry in these cases of strongly scattering adorbate atoms and anticipated atop adsorption sites.
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Surface structure of the C(0001)-(2 x 2)Cs system: Low-energy electron-diffraction dynamical calculation.

TL;DR: Test de modeles d'adsorption de surface et d'intercalation pour the structure C(0001)-(2×2)Cs comporte des atomes Cs chimisorbes dans des sites creux a 2,8 A au-dessus de the surface (0001) du graphite, le substrat en graphite ayant sa structure de volume
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Local effects in the interaction of potassium with Rh(111)

TL;DR: In this paper, a model system for alkali promotor effects on catalysts was proposed and the potassium interaction with Rh(111) was studied by UPS, AES, LEED, TDS and work function measurements.
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Formation of ordered islands in CO adsorption on K pre-covered Ni(100) surfaces

TL;DR: In this paper, structural models of these islands are presented, consistent with these and previous results, and two configurational "strategies" (I and II) were employed within an electrostatic framework to model microcalorimetry data.
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Sodium-promoted oxidation of Al(111) studied by core-level photoemission spectroscopy

TL;DR: In this article, the influence of preadsorbed sodium on the early stages of oxidation of Al(111) has been investigated using synchrotron radiation photoemission measurements of the Al and Ha 2p states.
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