Role of Long Range Interaction in Oxygen Superstructure Formation on Cu(001) and Ni(001)
Author:
Publisher
American Physical Society (APS)
Subject
General Physics and Astronomy
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevLett.89.116101/fulltext
Reference15 articles.
1. Direct low-energy electron-diffraction analysis ofc(2×2)O/Ni(100) including substrate reconstruction
2. Adsorbate-induced relaxation and reconstruction of c(2 × 2)O/Ni(100): A reinvestigation by leed structure analysis
3. Oxygen on Cu(100) – a case of an adsorbate induced reconstruction
4. Test of structural models for Cu(001)-(√2 × 2√2) R45°-O by LEED intensity analysis
5. Oxygen-induced missing-row reconstruction of Cu(001) and Cu(001)-vicinal surfaces
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1. Fluorinated Fullerene Molecule on Cu(001) Surface as a Controllable Source of Fluorine Atoms;The Journal of Physical Chemistry C;2018-09-25
2. Enhanced Mass Transfer in the Step Edge Induced Oxidation on Cu(100) Surface;The Journal of Physical Chemistry C;2017-05-22
3. Calculations of Oxygen Adsorption-Induced Surface Reconstruction and Oxide Formation on Cu(100);Chemistry of Materials;2017-02-13
4. Atomistic details of oxide surfaces and surface oxidation: the example of copper and its oxides;Surface Science Reports;2015-11
5. Introduction;Springer Series in Chemical Physics;2014
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