Sputtering of boron-doped graphite USB15—Investigation of the origin of low chemical erosion
- 15 April 1995
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 77 (8) , 3812-3817
- https://doi.org/10.1063/1.359560
Abstract
The changes in surface composition of USB15—a boron doped graphite containing 15 wt.% of boron—during bombardment with D ions were determined by in situ Auger electron spectroscopy at temperatures from 300 up to 1000 K. For energies above 100 eV no strong increase of the boron surface concentration could be observed even around 800 K, i.e., at the maximum for chemical erosion of pure graphite. Chemical factor analysis of the carbon Auger peak in this energy‐regime results in a much larger carbidic fraction of carbon atoms than suspected from the boron content of 15%. Thus, boron influences much more carbon atoms in their chemical reactivity with deuterium ions than is expected for the stoichiometric B4C precipitates. For ion energies below 100 eV a strong increase of boron surface concentration with decreasing ion energy at room temperature was observed. The chemical erosion of carbon in this energy regime is not suppressed by boron doping and indicates a different, surface related release process of hydrocarbon molecules.This publication has 13 references indexed in Scilit:
- Dynamics of B sublimation from boron doped graphite USB15Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 1993
- High temperature erosion of boron/carbon materialsJournal of Nuclear Materials, 1992
- Microstructure and some properties of boron modified graphite USB-15Journal of Nuclear Materials, 1992
- Sputtering of low-Z materialsJournal of Nuclear Materials, 1991
- Tridyn-binary collision simulation of atomic collisions and dynamic composition changes in solidsComputer Physics Communications, 1988
- Erosion and impurity production of C and Be: A comparisonJournal of Nuclear Materials, 1987
- Flux and energy dependence of methane production from graphite due to H+ impactJournal of Nuclear Materials, 1987
- On the problem of whether mass or chemical bonding is more important to bombardment-induced compositional changes in alloys and oxidesSurface Science, 1980
- Effects of enhanced diffusion on preferred sputtering of homogeneous alloy surfacesSurface Science, 1978
- Solid Solution of Boron in GraphiteJournal of the American Ceramic Society, 1967