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首页> 外文期刊>Scientific reports. >Combining intra- and intermolecular charge-transfer: a new strategy towards molecular ferromagnets and multiferroics
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Combining intra- and intermolecular charge-transfer: a new strategy towards molecular ferromagnets and multiferroics

机译:结合和分子间电荷转移:一种新的分子铁磁体和多法的策略

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Organic ferroelectric materials are currently a hot research topic, with mixed stack charge transfer crystals playing a prominent role with their large, electronic-in-origin polarization and the possibility to tune the transition temperature down to the quantum limit and/or to drive the ferroelectric transition via an optical stimulus. By contrast, and in spite of an impressive research effort, organic ferromagnets are rare and characterized by very low transition temperatures. Coexisting magnetic and electric orders in multiferroics offer the possibility to control magnetic (electric) properties by an applied electric (magnetic) field with impressive technological potential. Only few examples of multiferroics are known today, based on inorganics materials. Here we demonstrate that, by decorating mixed stack charge transfer crystals with organic radicals, a new family of robust molecular ferromagnets can be designed, stable up to ambient temperature, and with a clear tendency towards multiferroic behaviour.
机译:有机铁电材料目前是一个热门研究主题,混合堆堆电荷转移晶体以大,电子型极化的突出角色和可能性将过渡温度降至量子极限和/或驱动铁电通过光学刺激过渡。相比之下,尽管研究努力令人印象深刻,但有机铁磁素是稀有的并且具有非常低的过渡温度的特征。在多法层中​​共存磁性和电动订单可以通过令人印象深刻的技术潜力来控制施加的电气(磁性)场的磁性(电)特性。目前,仅基于无机材料,仅少数多分子的实例。在这里,我们证明,通过用有机自由基装饰混合堆叠电荷转移晶体,可以设计一系列新的稳健分子铁磁体,稳定达到环境温度,并且朝着多体性行为的透明倾向。

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