The influence of boron on the clustering of radiation damage in graphite
- 1 April 1969
- journal article
- research article
- Published by Taylor & Francis in Philosophical Magazine
- Vol. 19 (160) , 701-719
- https://doi.org/10.1080/14786436908216329
Abstract
Graphite single crystals have been doped with either 10B or 11B in the range 30 p.p.m. to 104 p.p.m. After irradiation to a dose of 7·6 × 1019 n/cm2 at 650°C or 900°C, the number and size of the interstitial loops were determined using thin foil electron microscopy. It was found that the loop density increases as the boron content to the one-half power and that the loop radius decreases as the boron content to the minus one-sixth power. The 10B transmutation to lithium and helium has no influence on the nucleation of the interstitial loops. Different effects are observed upon annealing the irradiated crystals, depending upon whether boron is introduced before or after irradiation. If the boron is introduced before irradiation, large vacancy loops are formed on annealing; if after irradiation, large interstitial loops are seen. The annealing results are interpreted on the basis of mutual annihilation between vacancies and interstitials and the loss of defects to the surface.Keywords
This publication has 20 references indexed in Scilit:
- The influence of boron on the clustering of radiation damage in graphitePhilosophical Magazine, 1969
- Solid Solution of Boron in GraphiteJournal of the American Ceramic Society, 1967
- Dimensional changes in pyrolytic graphite under fast-neutron irradiationPhilosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences, 1966
- On the electron microscopy of fission fragment damagePhilosophical Magazine, 1966
- An electron microscope study of radiation damage in single crystal graphitePhilosophical Magazine, 1965
- Electron microscope observations of irradiated graphite single crystalsCarbon, 1964
- Image overlap in transmission electron microscopyPhilosophical Magazine, 1964
- EFFECTS OF ANNEALING ON RADIATION-INDUCED LATTICE VACANCIES IN NATURAL GRAPHITE CRYSTALSApplied Physics Letters, 1964
- On the Determination of the Nature of Dislocation LoopsPhilosophical Magazine, 1964
- The Displacement of Atoms in Solids by RadiationReports on Progress in Physics, 1955