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Nanostructuring of Calcite Surfaces by Tribomechanical Etching with the Tip of an Atomic Force Microscope
Abstract Due to their sharp tips, scanning probe microscopes open the possibility for surface modification and surface manipulation on the nanometer scale and even on the atomic scale. The manipulation and arrangement of atoms adsorbed on a surface was demonstrated with the scanning tunneling microscope under UHV and at low temperatures [(1990), (1993)]. It was also demonstrated that it is not only possible to manipulate atoms adsorbed on a solid surface, but also to modify the lattice of a solid itself. Reversible switching of atomic-scale structures was demonstrated even under environmental conditions, i.e. at room temperature and in ambient air [(1991), (1991)].
Nanostructuring of Calcite Surfaces by Tribomechanical Etching with the Tip of an Atomic Force Microscope
Abstract Due to their sharp tips, scanning probe microscopes open the possibility for surface modification and surface manipulation on the nanometer scale and even on the atomic scale. The manipulation and arrangement of atoms adsorbed on a surface was demonstrated with the scanning tunneling microscope under UHV and at low temperatures [(1990), (1993)]. It was also demonstrated that it is not only possible to manipulate atoms adsorbed on a solid surface, but also to modify the lattice of a solid itself. Reversible switching of atomic-scale structures was demonstrated even under environmental conditions, i.e. at room temperature and in ambient air [(1991), (1991)].
Nanostructuring of Calcite Surfaces by Tribomechanical Etching with the Tip of an Atomic Force Microscope
Müller, M. (author) / Fiedler, Th. (author) / Schimmel, Th. (author)
2001-01-01
8 pages
Article/Chapter (Book)
Electronic Resource
English
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