Publikation: Enhancement of coercivity of self-assembled stacking of ferrimagnetic and antiferromagnetic nanocubes
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2020
Autor:innen
Sawano, Keisuke
Tsukiyama, Keishi
Shimizu, Makoto
Takasaki, Mihiro
Oaki, Yuya
Yamamoto, Takashi
Einaga, Yasuaki
Kaiju, Hideo
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Nanoscale. Royal Society of Chemistry (RSC). 2020, 12(14), pp. 7792-7796. ISSN 2040-3364. eISSN 2040-3372. Available under: doi: 10.1039/c9nr10558a
Zusammenfassung
The coercivity of magnetic nanoparticles is enhanced by the exchange coupling effect at the interface of ferrimagnetic and antiferromagnetic self-assembled monolayers. Antiferromagnetic Co3O4 nanocubes were regularly stacked on an ordered monolayer of ferrimagnetic Fe3O4 nanocubes by layer-by-layer manipulation using evaporation-driven self-assembly. The ordered arrangements of the ferrimagnetic and antiferromagnetic nanocubes are effective for the enhancement of the ferromagnetic character.
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SAWANO, Keisuke, Keishi TSUKIYAMA, Makoto SHIMIZU, Mihiro TAKASAKI, Yuya OAKI, Takashi YAMAMOTO, Yasuaki EINAGA, Christian JENEWEIN, Helmut CÖLFEN, Hideo KAIJU, Tetsuya SATO, Hiroaki IMAI, 2020. Enhancement of coercivity of self-assembled stacking of ferrimagnetic and antiferromagnetic nanocubes. In: Nanoscale. Royal Society of Chemistry (RSC). 2020, 12(14), pp. 7792-7796. ISSN 2040-3364. eISSN 2040-3372. Available under: doi: 10.1039/c9nr10558aBibTex
@article{Sawano2020-04-14Enhan-49853, year={2020}, doi={10.1039/c9nr10558a}, title={Enhancement of coercivity of self-assembled stacking of ferrimagnetic and antiferromagnetic nanocubes}, number={14}, volume={12}, issn={2040-3364}, journal={Nanoscale}, pages={7792--7796}, author={Sawano, Keisuke and Tsukiyama, Keishi and Shimizu, Makoto and Takasaki, Mihiro and Oaki, Yuya and Yamamoto, Takashi and Einaga, Yasuaki and Jenewein, Christian and Cölfen, Helmut and Kaiju, Hideo and Sato, Tetsuya and Imai, Hiroaki} }
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