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在显示碟状液晶相的非π离域氮氧自由基化合物中观察到独特的类超顺磁性行为。

Unique Superparamagnetic-like Behavior Observed in Non-π-delocalized Nitroxide Diradical Compounds Showing Discotic Liquid Crystalline Phase.

机构信息

Graduate School of Human and Environmental Studies, Kyoto University, Yoshida Nihonmatsu-cho, Sakyo-ku, Kyoto, 606-8501, Japan.

N. N. Vorozhtsov Novosibirsk Institute of Organic Chemistry, Siberian Branch of Russian Academy of Sciences, Novosibirsk State University, 9 Akademika Lavrentieva Ave., Novosibirsk 630090 (Russia), 2 Pirogova St., Novosibirsk, 630090, Russia.

出版信息

Chemistry. 2018 Nov 22;24(65):17293-17302. doi: 10.1002/chem.201803534. Epub 2018 Oct 31.

Abstract

A unique superparamagnetic-like behavior and a large "positive magneto-LC effect" were observed in the solid phases and the hexagonal columnar (Col ) liquid crystalline (LC) phase, respectively, of novel achiral non-π-delocalized nitroxide diradical compounds (R,S)-1, which showed polymorphism in the solid phases (solids I and II). The SQUID magnetization measurement revealed that (1) (R,S)-1 containing a small amount of racemic diastereomers (R*,R*)-1 possessed an unusual and large temperature-independent magnetic susceptibility (χ >0) component in the original nanocrystalline solid I that was responsible for the observed superparamagnetic-like behavior under low magnetic fields and did not arise from the contamination by extrinsic magnetic metal or metal ion impurities, besides ordinary temperature-dependent paramagnetic susceptibility (χ >0) and temperature-independent diamagnetic susceptibility (χ <0) components, (2) a large increase in molar magnetic susceptibility (χ ) (positive magneto-LC effect) that occurred at the solid I-to-liquid crystal transition upon heating was preserved as an additional χ increase in the resulting polymorphic nanocrystalline solid II by cooling, and (3) such unique magnetic phenomena were induced by thermal processing for (R,S)-1 or by adding a small amount of (R*,R*)-1 to (R,S)-1 as the impurity.

摘要

在新型非手性非-π离域硝酮双自由基化合物 (R,S)-1 的固相和六方柱状 (Col) 液晶 (LC) 相中,分别观察到独特的超顺磁行为和大的“正磁 LC 效应”,其在固相(固相 I 和 II)中表现出多晶型性。SQUID 磁化测量表明,(1)在含有少量外消旋非对映异构体 (R*,R*)-1 的 (R,S)-1 中,在原始纳米晶固相 I 中存在一个不寻常的、与温度无关的大磁磁化率 (χ>0) 成分,这是在低磁场下观察到的超顺磁行为的原因,并且不是由外源性磁性金属或金属离子杂质的污染引起的,除了普通的与温度有关的顺磁磁化率 (χ>0) 和与温度无关的抗磁磁化率 (χ<0) 成分,(2)加热时固相 I 到液晶转变时摩尔磁化率 (χ)(正磁 LC 效应)的大幅增加在冷却后以多晶纳米晶固相 II 的附加 χ 增加的形式保留下来,(3)这种独特的磁现象是通过对 (R,S)-1 进行热处理或通过向 (R,S)-1 添加少量 (R*,R*)-1 作为杂质来诱导的。

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