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The rise of organic magnetoresistance: materials and challenges

机译:有机磁阻的兴起:材料和挑战

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This paper provides a brief review of recent progress regarding the magnetoresistive effect observed in organic semiconductors (OMAR). While the physical phenomena associated with the application of a magnetic field are well-known for vertical devices using a non-magnetic material sandwiched between two ferromagnetic electrodes, large magnetic-field effects in devices in which the organic semiconducting layer is sandwiched between non-ferromagnetic electrodes came as a great surprise. Recently, immense OMAR, exceeding 1000%, was reported in devices based on organic blends designed for achieving thermally activated delayed fluorescence. Such effect is amongst the largest ones measured for non-magnetic bulk materials and opens a truly novel and intriguing physical scenario that paves the way for new applications in magnetic field sensing and organic spintronics. While the precise origin of these magnetic-field effects in organics is still a matter of debate and involves interactions between charged and uncharged species of different natures, here we present an overview of the OMAR effect that focuses on material design and molecular engineering strategies thus far employed in the field. Current ideas regarding the molecular and structural origins of OMAR along with a final outlook on molecular design are presented.
机译:本文简要介绍了有机半导体(OMAR)中观察到的磁阻效应的最新进展。虽然使用夹在两个铁磁性电极之间的非磁性材料的垂直器件,所熟知与磁场相关的物理现象是众所周知的,但是在非铁磁之间夹在其中有机半导体层中的装置中的大磁场效应。电极是一个惊喜。最近,在基于用于实现热活化的延迟荧光的有机共混物的器件中报道了超过1000%的巨大奥马尔。这种效果是对非磁性散装材料测量的最大的效果,并打开了一个真正的新颖和有趣的物理场景,为磁场感测和有机闪贷的新应用铺平了道路。虽然有机物中这些磁场效应的精确起源仍然是辩论问题,但涉及不同自然的带电和不带电物种之间的相互作用,在这里我们概述了奥马尔效应的概述,这些效果侧重于迄今为止的材料设计和分子工程策略在该领域采用。介绍了关于奥马尔分子和结构起源以及最终的分子设计前景的目的。

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