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Molecular magnetic materials based on 4d and 5d transition metals

机译:基于4d和5d过渡金属的分子磁性材料

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The study of paramagnetic compounds based on 4d and 5d transition metals is an emerging research topic in the field of molecular magnetism. An essential driving force for the interest in this area is the fact that heavier metal ions introduce important attributes to the physical properties of paramagnetic compounds. Among the attractive characteristics of heavier elements vis-a-vis magnetism are the diffuse nature of their d orbitals, their strong magnetic anisotropy owing to enhanced spin-orbit coupling, and their diverse structural and redox properties. This critical review is intended to introduce readers to the topic and to report recent progress in this area. It is not fully comprehensive in scope although we strived to include all relevant topics and a large subset of references in the area. Herein we provide a survey of the history and current status of research that has been conducted on the topic of second and third row transition metal molecular magnetism. The article is organized according to the nature of the precursor building blocks with special topics being highlighted as illustrations of the special role of heavier transition metal ions in the field. This paper is addressed to readers who are interested in molecular magnetism and the application of coordination chemistry principles to materials synthesis (231 references).
机译:基于4d和5d过渡金属的顺磁性化合物的研究是分子磁性领域中一个新兴的研究课题。对这一领域感兴趣的基本驱动力是这样的事实,即较重的金属离子为顺磁性化合物的物理性质引入了重要的属性。重元素相对于磁性的吸引人的特性包括其d轨道的扩散性质,由于增强的自旋轨道耦合而引起的强磁各向异性以及其不同的结构和氧化还原特性。这篇重要的评论旨在向读者介绍该主题,并报告该领域的最新进展。尽管我们努力将所有相关主题和该领域的大量参考文献包括在内,但其范围并不全面。在这里,我们提供了关于第二行和第三行过渡金属分子磁性的研究历史和现状的概述。本文根据前体构建基块的性质进行了组织,并着重强调了特殊主题,以举例说明更重的过渡金属离子在该领域的特殊作用。本文面向对分子磁性以及配位化学原理在材料合成中的应用感兴趣的读者(231篇参考文献)。

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