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Elucidation of the enhanced ferromagnetic origin in Mn-doped zno nanocrystals embedded into a SiO2 matrix

Authors
Lee, SejoonLee, YoungminKim, Deuk Young
Issue Date
Jan-2013
Publisher
KOREAN PHYSICAL SOC
Keywords
ZnO:Mn; Nanocrystals; Ferromagnetism; Spontaneous magnetization
Citation
JOURNAL OF THE KOREAN PHYSICAL SOCIETY, v.62, no.1, pp 92 - 98
Pages
7
Indexed
SCI
SCIE
SCOPUS
KCI
Journal Title
JOURNAL OF THE KOREAN PHYSICAL SOCIETY
Volume
62
Number
1
Start Page
92
End Page
98
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/24634
DOI
10.3938/jkps.62.92
ISSN
0374-4884
1976-8524
Abstract
The origin of the enhanced room temperature ferromagnetism in Mn-doped ZnO (ZnO:Mn) nanocrystals is investigated. ZnO:Mn nanocrystals, which were fabricated by using a laser irradiation method with a 248-nm KrF excimer laser, exhibited two-times increase in the spontaneous magnetization (similar to 0.4 emu/cm(3) at 300 K) compared to the ZnO:Mn thin film (similar to 0.2 emu/cm(3) at 300 K). The increased exchange integral of J (1)/k (B) = 51.6 K in ZnO:Mn nanocrystals, in comparison with the ZnO:Mn thin film (J (1)/k (B) = 46.9 K), is indicative of the enhanced ferromagnetic exchange interaction. This is attributed to the large number of acceptor defects in the SiO2-capped ZnO:Mn nanocrystals. Namely, the holes bound to the acceptor defects form microscopic bound-magneticpolarons with Mn ions; hence, long-range ferromagnetic coupling is enhanced. The results suggest that ferromagnetism in ZnO-based dilute magnetic semiconductors can be controlled by modulating the density of native point defects, which can be chemically and thermodynamically modified during the material synthesis or preparation.
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College of Natural Science > Division of Physics & Semiconductor Science > 1. Journal Articles
College of Advanced Convergence Engineering > Division of System Semiconductor > 1. Journal Articles

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Lee, Se Joon
College of Advanced Convergence Engineering (Division of System Semiconductor)
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