Hydrogen Atoms Cause Long-Range Electronic Effects on Graphite
- 22 May 2000
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review Letters
- Vol. 84 (21) , 4910-4913
- https://doi.org/10.1103/physrevlett.84.4910
Abstract
We report on long-range electronic effects caused by hydrogen-carbon interaction at the graphite surface. Two types of defects could be distinguished with a combined mode of scanning tunneling microscopy and atomic force microscopy: chemisorption of hydrogen on the basal plane of graphite and atomic vacancy formation. Both types show a superlattice in the local density of states but have a different topographic structure. The range of modifications in the electronic structure, of fundamental importance for electronic devices based on carbon nanostructures, has been found to be of the order of 20–25 lattice constants.
Keywords
This publication has 17 references indexed in Scilit:
- Novel Length Scales in Nanotube DevicesPhysical Review Letters, 1999
- Imaging Electron Wave Functions of Quantized Energy Levels in Carbon NanotubesScience, 1999
- Determination of α and β site defects on graphite using C60-adsorbed STM tipsSurface Science, 1998
- Direct observation of standing wave formation at surface steps using scanning tunneling spectroscopyPhysical Review Letters, 1993
- Imaging standing waves in a two-dimensional electron gasNature, 1993
- Electron cyclotron resonance plasma experiment for in situ surface modification, deposition, and analysisJournal of Vacuum Science & Technology A, 1992
- Periodic charge-density modulations on graphite near platinum particlesPhysical Review B, 1991
- Chemisorption of hydrogen on different planes of graphite — A semi-empirical molecular orbital calculationSurface Science, 1989
- Long-Range Electronic Perturbations Caused by Defects Using Scanning Tunneling MicroscopyScience, 1989
- Theory and observation of highly asymmetric atomic structure in scanning-tunneling-microscopy images of graphitePhysical Review B, 1987