1995
DOI: 10.1103/physrevb.52.r14356
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Symmetry and electronic structure of the Mn impurity in ZnS nanocrystals

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Cited by 173 publications
(159 citation statements)
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“…12 The crystal-field experienced by the Mn impurities will depend on the location of Mn in the host quantum dots. Also the crystal-field experienced by Mn impurities near the nanocrystal surface 11 will be significantly different from that of the bulk material. EPR measurements can give insight to the local crystal-field effects and symmetry around the Mn ions.…”
Section: Resultsmentioning
confidence: 99%
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“…12 The crystal-field experienced by the Mn impurities will depend on the location of Mn in the host quantum dots. Also the crystal-field experienced by Mn impurities near the nanocrystal surface 11 will be significantly different from that of the bulk material. EPR measurements can give insight to the local crystal-field effects and symmetry around the Mn ions.…”
Section: Resultsmentioning
confidence: 99%
“…Moreover, at least in some of the quantum dots, the Mn-Mn interaction is strong enough to reveal the hyperfine splitting. Signal II may arise due to the location of Mn near the surface 5,11,13 of the ZnSe quantum dot. Signal II is superimposed on signal I, and is originated since Mn 2+ has less of a symmetric environment.…”
Section: Resultsmentioning
confidence: 99%
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“…Since the hyperfine splitting is strongly dependent on the local environment, EPR spectra can be used to determine the location of the Mn. 23 From Figure 4a, we extract a hyperfine splitting of 60.4 × 10 -4 cm -1 . This value agrees well with that obtained for Mn at cubic lattice sites in bulk ZnSe (61.7 Figure 1).…”
Section: Report Documentation Pagementioning
confidence: 99%