超级交换
铁磁性
卤化物
自旋电子学
结晶学
铜
居里温度
磁圆二色性
材料科学
圆二色性
金属卤化物
对映体
磁各向异性
化学
结晶
二色性
超分子化学
凝聚态物理
桥联配体
磁化
化学物理
正交晶系
各向异性
格子(音乐)
甲脒
溴化物
作者
Ying Lu,Yong Li,JieYing Wang,Zhe Zhang,Yufen Zhao,Zongcheng Miao
标识
DOI:10.1021/acs.cgd.5c01706
摘要
Chiral molecular magnets are attractive for next-generation sensing, information storage, and spintronic technologies. Here, we report the synthesis and characterization of the zero-dimensional enantiomeric copper halides (R/S-PPA)2CuX4 (X = Cl, Br) (PPA = phenylpropylamine), prepared via a slow solvent evaporation crystallization method. These materials consist of isolated [CuX4]2– tetrahedra embedded in chiral organic frameworks and exhibit intense and opposite circular dichroism signals with amplitudes up to ±100 mdeg. Although the inorganic lattice is structurally zero-dimensional with isolated [CuX4]2– units, effective three-dimensional magnetic connectivity is established via supramolecular superexchange pathways. The bromide analogue displays clear low-temperature ferromagnetic ordering, with a saturation magnetization of 8.72 emu g–1 (1.02 ± 0.03 μB/f.u.) and a Curie temperature of 9.7 ± 0.2 K. These lead-free 0D copper halides provide a low-temperature platform for chirality-magnetism and spin-dependent studies, and offer design guidelines toward higher ordering temperatures.
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