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Effect of Ambient Atmosphere on Defect Generation in MgO during Mechanical Activation

✍ Scribed by Prof. V. I. Spitsyn; Prof. Dr. U. Steinike; Dr. L. I. Barsova; Dr. H.-P. Hennig; Dr. T. K. Jurik; Dr. U. Kretzschmar


Publisher
John Wiley and Sons
Year
1986
Tongue
English
Weight
182 KB
Volume
21
Category
Article
ISSN
0232-1300

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✦ Synopsis


As previous studies have shown (SPITSYN et al.; HENDERSON, WERTZ; STEINIKE et al. 1981 STEINIKE et al. , 1984;; HENNIG et al.), mechanical activation of MgO in air results in the generation of anion and cation vacancies in the lettice, thus causing heterogeneous lattice distortions. These anion and cation vacancies are identified as F+and V--centres, respectively, by EPR spectroscopy. F+-centres are anion vacancies filled with electrons, V--centres are cation vacancies filled with holes. The electrons and defect electrons filling the vacancies are generated essentially during y-irradiation. Since the effect of the ambient atmosphere on the generation of electronic and structural defects upon mechanical activation is known (BYSTRIKOV et al.), the studies of mechanical MgO activation in air were extended to the generation of above defects in an argon atmosphere. The results are compared with those obtained in air.