Rotational dynamics of colloidal hexaferrite nanoplates
Artem A Eliseev
1, 2
,
Andrei A Eliseev
1, 2
,
Lev A. Trusov
1, 2
,
Andrei P Chumakov
3
,
Peter Boesecke
3
,
Evgeny O Anokhin
2
,
Alexander V Vasiliev
1, 2
,
Anastasia E Sleptsova
2
,
Vladimir V Korolev
2
,
Pavel E Kazin
1
Publication type: Journal Article
Publication date: 2018-09-10
scimago Q1
wos Q2
SJR: 0.896
CiteScore: 6.1
Impact factor: 3.6
ISSN: 00036951, 10773118
Physics and Astronomy (miscellaneous)
Abstract
Here, we report an experimental study on the rotational dynamics of hard magnetic hexaferrite nanoparticles in water. A stable aqueous colloid of SrFe12O19 was synthesized by the borate glass-ceramic dissolution technique and studied by TEM, small-angle X-ray scattering (SAXS), magnetometry, and optical transmission methods in applied DC and AC magnetic fields. The particles represent nanoplates with a mean diameter of 50 nm and a mean thickness of 5 nm having a coercive force of 4700 Oe and a saturation magnetization of 51.5 emu/g. According to magnetic field dependent SAXS data, a probability orientation function was suggested considering the colloidal particle rotation in the applied field as an activation-free process. The magnetization dynamics of the colloidal rotators was described by an interplay of magnetic torque and drag force in the frame of a non-interacting particle model. At frequencies below 100 Hz, the particles are able to fully rotate after the magnetic field. At higher frequencies, the complete following becomes impossible due to the energy dissipation and the particle movement changes to oscillations around randomly oriented axes. These vibrational axes can be aligned by a strong external permanent magnetic field, causing the coherent particle oscillations and correspondingly the rise of the high-frequency response of the colloid optical transmission. As a result, the efficient magneto-optical light modulation has been achieved at frequencies exceeding 5 kHz, revealing the fastest response rates among known colloidal magneto-optical media.Here, we report an experimental study on the rotational dynamics of hard magnetic hexaferrite nanoparticles in water. A stable aqueous colloid of SrFe12O19 was synthesized by the borate glass-ceramic dissolution technique and studied by TEM, small-angle X-ray scattering (SAXS), magnetometry, and optical transmission methods in applied DC and AC magnetic fields. The particles represent nanoplates with a mean diameter of 50 nm and a mean thickness of 5 nm having a coercive force of 4700 Oe and a saturation magnetization of 51.5 emu/g. According to magnetic field dependent SAXS data, a probability orientation function was suggested considering the colloidal particle rotation in the applied field as an activation-free process. The magnetization dynamics of the colloidal rotators was described by an interplay of magnetic torque and drag force in the frame of a non-interacting particle model. At frequencies below 100 Hz, the particles are able to fully rotate after the magnetic field. At higher frequencies, the...
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27
Total citations:
27
Citations from 2025:
4
(14.81%)
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GOST
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Eliseev A. A. et al. Rotational dynamics of colloidal hexaferrite nanoplates // Applied Physics Letters. 2018. Vol. 113. No. 11. p. 113106.
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Eliseev A. A., Eliseev A. A., Trusov L. A., Chumakov A. P., Boesecke P., Anokhin E. O., Vasiliev A. V., Sleptsova A. E., Gorbachev E. A., Korolev V. V., Kazin P. E. Rotational dynamics of colloidal hexaferrite nanoplates // Applied Physics Letters. 2018. Vol. 113. No. 11. p. 113106.
Cite this
RIS
Copy
TY - JOUR
DO - 10.1063/1.5044728
UR - https://doi.org/10.1063/1.5044728
TI - Rotational dynamics of colloidal hexaferrite nanoplates
T2 - Applied Physics Letters
AU - Eliseev, Artem A
AU - Eliseev, Andrei A
AU - Trusov, Lev A.
AU - Chumakov, Andrei P
AU - Boesecke, Peter
AU - Anokhin, Evgeny O
AU - Vasiliev, Alexander V
AU - Sleptsova, Anastasia E
AU - Gorbachev, Evgeny A.
AU - Korolev, Vladimir V
AU - Kazin, Pavel E
PY - 2018
DA - 2018/09/10
PB - AIP Publishing
SP - 113106
IS - 11
VL - 113
SN - 0003-6951
SN - 1077-3118
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2018_Eliseev,
author = {Artem A Eliseev and Andrei A Eliseev and Lev A. Trusov and Andrei P Chumakov and Peter Boesecke and Evgeny O Anokhin and Alexander V Vasiliev and Anastasia E Sleptsova and Evgeny A. Gorbachev and Vladimir V Korolev and Pavel E Kazin},
title = {Rotational dynamics of colloidal hexaferrite nanoplates},
journal = {Applied Physics Letters},
year = {2018},
volume = {113},
publisher = {AIP Publishing},
month = {sep},
url = {https://doi.org/10.1063/1.5044728},
number = {11},
pages = {113106},
doi = {10.1063/1.5044728}
}
Cite this
MLA
Copy
Eliseev, Artem A., et al. “Rotational dynamics of colloidal hexaferrite nanoplates.” Applied Physics Letters, vol. 113, no. 11, Sep. 2018, p. 113106. https://doi.org/10.1063/1.5044728.