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Molecule-based magnets

机译:分子磁体

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摘要

The conventional magnetic materials used in current technology, such as, Fe, Fe_2O_3, Cr_2O_3, SmCo_5, Nd_2Fe_(14)B etc are all atom-based, and their preparation/processing require high temperature routes. Employing self-assembly methods, it is possible to engineer a bulk molecular material with long-range magnetic order, mainly because one can play with the weak intermolecular interactions. Since the first successful synthesis of molecular magnets in 1986, a large variety of them have been synthesized, which can be categorized on the basis of the chemical nature of the magnetic units involved: organic-, metal-based systems, hetero-bimetallic assemblies, or mixed organic-inorganic systems. The design of molecule-based magnets has also been extended to the design of poly-functional molecular magnets, such as those exhibiting second-order optical nonlinearity, liquid crystallinity, or chirality simultaneously with long-range magnetic order. Solubility, low density and biocompatibility are attractive features of molecular magnets. Being weakly coloured, unlike their opaque classical magnet 'cousins' listed above, possibilities of photomagnetic switching exist. Persistent efforts also continue to design the ever-elusive polymer magnets towards applications in industry. While providing a brief overview of the field of molecular magnetism, this article highlights some recent developments in it, with emphasis on a few studies from the author's own lab.
机译:当前技术中使用的常规磁性材料,例如Fe,Fe_2O_3,Cr_2O_3,SmCo_5,Nd_2Fe_(14)B等都是基于原子的,其制备/加工需要高温路线。使用自组装方法,可以设计具有长距离磁序的块状分子材料,这主要是因为人们可以发挥弱的分子间相互作用。自1986年首次成功合成分子磁体以来,已经合成了各种各样的分子磁体,可以根据所涉及的磁性单元的化学性质对其进行分类:有机,金属基系统,异双金属组件,或有机-无机混合系统。基于分子的磁体的设计也已扩展到多功能分子磁体的设计,例如同时具有二阶光学非线性,液晶性或手性与远距离磁序的磁体。溶解性,低密度和生物相容性是分子磁体的吸引人的特征。与上面列出的不透明的经典磁体“表兄弟”不同,它们的颜色较弱,因此存在光磁转换的可能性。持续的努力还继续设计出难以捉摸的聚合物磁体,以用于工业应用。在简要介绍分子磁性领域的同时,本文重点介绍了分子磁性领域的一些最新进展,重点介绍了作者自己实验室的一些研究。

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