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増田 優花*; 阪田 潮実*; 萱原 早織*; 入江 夏生*; 古府 麻衣子; 河野 洋平*; 榊原 俊郎*; 堀井 洋司*; 梶原 孝志*
Journal of Physical Chemistry C, 127(6), p.3295 - 3306, 2023/02
被引用回数:1 パーセンタイル:45.8(Chemistry, Physical)Trinuclear M(II)-Gd(III)-M(II) complexes 1 (M = Zn), 2 (M = Mg), and the magnetically dilute sample 1' were synthesized and the slow magnetization relaxation originating from Gd(III) ions was investigated in detail. These complexes are crystallographically isostructural and belong to point group symmetry, with M-Gd-M arrayed on the crystallographic 3-fold axis. From the angular-resolved magnetization of a single crystal of 1, an easy-axis-type magnetic anisotropy of Gd(III) with an anisotropy parameter D of -0.21(3) K were revealed. All the complexes underwent slow relaxation under the application of an external magnetic field. The temperature dependence of the relaxation rate differed considerably between 1' and 1, 2. The discrepancy can be attributed to the presence of competing multiple relaxation processes, such as direct and Raman processes, and at dilution, the direct process becomes faster, leading to its predominance in 1'. For 1 and 2, the larger power number (~1.5) was attributed to the significantly greater contribution from the Raman process, which may be originated from intramolecular atomic vibrations.
古府 麻衣子; 梶原 孝志*; 河村 聖子; 菊地 龍弥*; 中島 健次; 松浦 直人*; 柴田 薫; 長尾 道弘*; 山室 修*
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単分子磁石とは、ナノスケールの単一分子が大きな磁気モーメント・磁気異方性を有し、超常磁性挙動を示す物質群のことである。Zn-Ln-Zn三核錯体(Ln=Ce, Pr, Nd)は、分子中の磁性イオンは1つのみで、f電子数の偶奇性に応じて磁気緩和挙動が大きく変化する興味深い物質である。本講演では、中性子散乱研究により明らかになった系のエネルギースキームおよび磁気緩和の全体像を示し、磁化反転メカニズムについて議論する。