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Switching Magnetic Properties by a Mechanical Motion

机译:通过机械运动切换磁性

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Switching magnetic properties have attracted a wide interest from inorganic chemist for the objectives of information storage and quantum computing at the molecular level. This review is focused on magnetic switches based on a mechanical motion, which is an innovative approach. Three main strategies to control magnetic properties by a mechanical motion have been developed in the literature and will be described. The first one (ligand-induced spin change) consists in modulating the ligand field strength by a configuration change of the ligand in spin-crossover complexes. The second one (coordination-induced spin-state switching) is based on a change in the coordination number of a metallic center that is triggered by the motion of one ligand. The third one uses the modulation of the exchange interaction between two spin-centers by a mechanical motion.
机译:转换磁性已引起无机化学家对分子水平上信息存储和量子计算目标的广泛兴趣。本文的重点是基于机械运动的电磁开关,这是一种创新方法。在文献中已经开发了三种主要的通过机械运动控制磁性能的策略,并将对其进行描述。第一个(配体诱导的自旋变化)在于通过自旋交联复合物中配体的构型变化来调节配体场强。第二种(配位诱导的自旋态转换)是基于一个配体的运动触发的金属中心配位数的变化。第三类通过机械运动来调节两个自旋中心之间的交换相互作用。

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