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Spin-reorientation-induced magnetodielectric coupling effects in two layered perovskite magnets.


ABSTRACT: Spin-reorientation-induced magnetodielectric coupling effects were discovered in two layered perovskite magnets, [C6H5CH2CH2NH3]2[MCl4] (M = Mn2+ and Cu2+), via isothermal magnetodielectric measurements on single-crystal samples. Specifically, peak-like dielectric anomalies and spin-flop transitions appeared simultaneously at around ±34 kOe for the canted antiferromagnet (M = Mn2+) at below 44.3 K, while a low-field (1 kOe) controlled magnetodielectric effect was observed in the "soft" ferromagnet (M = Cu2+) at below 9.5 K. These isothermal magnetodielectric effects are highly reproducible and synchronous with the field-induced magnetization at different temperatures, well confirming the essential role of spin reorientation on inducing magnetodielectric coupling effects. These findings strongly imply that the layered perovskite magnets are new promising organic-inorganic hybrid systems to host magnetodielectric coupling effects.

SUBMITTER: Huang B 

PROVIDER: S-EPMC6237123 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Spin-reorientation-induced magnetodielectric coupling effects in two layered perovskite magnets.

Huang Bo B   Zhang Jian-Yu JY   Huang Rui-Kang RK   Chen Ming-Kun MK   Xue Wei W   Zhang Wei-Xiong WX   Zeng Ming-Hua MH   Chen Xiao-Ming XM  

Chemical science 20180801 37


Spin-reorientation-induced magnetodielectric coupling effects were discovered in two layered perovskite magnets, [C<sub>6</sub>H<sub>5</sub>CH<sub>2</sub>CH<sub>2</sub>NH<sub>3</sub>]<sub>2</sub>[MCl<sub>4</sub>] (M = Mn<sup>2+</sup> and Cu<sup>2+</sup>), <i>via</i> isothermal magnetodielectric measurements on single-crystal samples. Specifically, peak-like dielectric anomalies and spin-flop transitions appeared simultaneously at around ±34 kOe for the canted antiferromagnet (M = Mn<sup>2+</sup>  ...[more]

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