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Molecular rectifiers based on donor/acceptor assemblies: effect of orientation of the components' magnetic moments

机译:基于供体/受体分子整流器组件:取向的影响组件的磁矩

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摘要

In forming donor/acceptor assemblies that act as molecular rectifiers, we have introduced magnetic organic molecules as electron-donating and electron-accepting moieties. We have oriented the magnetic moment of the donor and acceptor components separately and immobilized them (and their moments) so that the molecular assemblies that act as rectifiers could be formed with moments mutually parallel or anti-parallel to each other. We have characterized the molecular assemblies formed on an electrode with a scanning tunneling microscope tip. Such donor/acceptor assemblies with a control over the orientation of moments of the components provided unique systems to study the effect of the nature of alignment on molecular rectifiers. We have observed that the rectification ratio increased in junctions with moments of the components being parallel to each other. The improvement in the rectification ratio has been explained in terms of an efficient electron-transfer process in a moment-aligned junction between the donor and acceptor moieties.
机译:形成供体/受体作为程序集分子整流器,我们已经介绍了磁性有机分子和电子基传导半个。磁矩的供体和受体(和组件分别和固定化他们时刻),这样分子组装作为整流器可以形成时刻相互平行或反平行对方。总成上形成扫描电极穿隧显微镜小费。议会控制的方向时刻的组件提供了独特的系统研究对齐的性质的影响分子整流器。整流比增加连接时刻的组件被平行其他。已经解释的一种有效的moment-aligned电子转换过程结供体和受体之间的根。

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