首页> 外文期刊>Journal of the Physical Society of Japan >Local-Site Dependency of Magneto-Chiral Dichroism in Enantiopure One-Dimensional Copper(II)-Chromium(III) Coordination Polymers
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Local-Site Dependency of Magneto-Chiral Dichroism in Enantiopure One-Dimensional Copper(II)-Chromium(III) Coordination Polymers

机译:磁性手性二中间依赖于对映射一维铜(II)的磁性手性二中间依赖性 - 铬(III)配位聚合物

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摘要

Magneto-chiral dichroism (MChD) is a nonreciprocal directional dichroism emerged by applying a magnetic field to chiral materials, which provides a clear distinction between light propagating parallel and antiparallel to the magnetic-field direction. So far the correlation between the metal origin magnetization and MChD signal has been reported in homometallic complexes bearing chiral ligands, but that in hetero-metal systems with short-range correlations has never been investigated. Here, we demonstrate that MChD in d-d transitions of Cu-II bearing chiral ligands in an cyano-bridged copper(II) -chromium(M) chain is mainly proportional to the magnetization of local Cu-II center, which involves intraatomic transition, rather than to the ferromagnetically correlated spin magnetization.
机译:磁性手性二色(MCHD)是通过将磁场施加到手性材料而出现的非透镜方向二中间,其在平行传播并反平行于磁场方向上提供明显的区别。 到目前为止,已经报道了金属原始磁化和MCHD信号之间的相关性在携带手性配体的同型复合物中,但在具有短距离相关性的杂金属系统中从未被研究过。 在这里,我们证明了氰基桥铜(II)铜(II)铜(II)链中Cu-II携带手性配体的MCHD在-Chromium(M)链中主要与局部Cu-II中心的磁化成比例,这涉及胎儿转型 而不是铁磁性相关的旋转磁化。

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