EPR identification of defects responsible for thermoluminescence in Cu-doped lithium tetraborate (Li2B4O7) crystals
Autor: | John W. McClory, Peter A. Dowben, Volodymyr Adamiv, Larry E. Halliburton, A. T. Brant, D.A. Buchanan, Ya. V. Burak |
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Rok vydání: | 2013 |
Předmět: |
Chemistry
Biophysics Analytical chemistry chemistry.chemical_element General Chemistry Condensed Matter Physics Biochemistry Crystallographic defect Thermoluminescence Atomic and Molecular Physics and Optics law.invention Ion Crystal law Interstitial defect Vacancy defect Lithium Electron paramagnetic resonance Nuclear chemistry |
Zdroj: | Journal of Luminescence. 139:125-131 |
ISSN: | 0022-2313 |
DOI: | 10.1016/j.jlumin.2013.02.023 |
Popis: | Electron paramagnetic resonance (EPR) is used to identify the electron and hole traps responsible for thermoluminescence (TL) peaks occurring near 100 and 200 °C in copper-doped lithium tetraborate (Li2B4O7) crystals. As-grown crystals have Cu+ and Cu2+ ions substituting for lithium and have Cu+ ions at interstitial sites. All of the substitutional Cu2+ ions in the as-grown crystals have an adjacent lithium vacancy and give rise to a distinct EPR spectrum. Exposure to ionizing radiation at room temperature produces a second and different Cu2+ EPR spectrum when a hole is trapped by substitutional Cu+ ions that have no nearby defects. These two Cu2+ trapped-hole centers are referred to as Cu2+-VLi and Cu active 2 + , respectively. Also during the irradiation, two trapped-electron centers in the form of interstitial Cu0 atoms are produced when interstitial Cu+ ions trap electrons. They are observed with EPR and are labeled Cu A 0 and Cu B 0 . When an irradiated crystal is warmed from 25 to 150 °C, the Cu active 2 + centers have a partial decay step that correlates with the TL peak near 100 °C. The concentrations of Cu A 0 and Cu B 0 centers, however, increase as the crystal is heated through this range. As the crystal is further warmed between 150 and 250 °C, the EPR signals from the Cu active 2 + hole centers and Cu A 0 and Cu B 0 electron centers decay simultaneously. This decay step correlates with the intense TL peak near 200 °C. |
Databáze: | OpenAIRE |
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