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Interface Engineering To Control Magnetic Field Effects of Organic- Based Devices by Using a Molecular Self-Assembled Monolayer

机译:通过分子自组装单分子层控制有机基器件的磁场效应的界面工程

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摘要

Organic semiconductors hold immense promise for the development of a wide range of innovative devices with their excellent electronic and manufacturing characteristics. Of particular interest are nonmagnetic organic semiconductors that show unusual magnetic field effects (MFEs) at small subtesla field strength that can result in substantial changes in their optoelectronic and electronic properties. These unique phenomena provide a tremendous opportunity to significantly impact the functionality of organic-based devices and may enable disruptive electronic and spintronic technologies. Here, we present an approach to vary the MFEs on the electrical resistance of organic-based systems in a simple yet reliable fashion. We experimentally modify the interfacial characteristics by adding a self-assembled monolayer between the metal electrode and the organic semiconductor, thus enabling the tuning of competing MFE mechanisms coexisting in organic semiconductors. This approach offers a robust method for tuning the magnitude and sign of magnetoresistance in organic semiconductors without compromising the ease of processing.
机译:有机半导体凭借其出色的电子和制造特性,有望开发出各种各样的创新设备。特别引起关注的是非磁性有机半导体,该半导体在较小的底磁场强度下会显示出异常的磁场效应(MFE),从而可能导致其光电和电子性能发生实质性变化。这些独特的现象为显着影响有机设备的功能提供了巨大的机会,并可能实现颠覆性的电子和自旋电子技术。在这里,我们提出了一种以简单而可靠的方式改变基于有机体系的电阻的MFE的方法。我们通过在金属电极和有机半导体之间添加自组装单层实验性地修改了界面特性,从而能够调整有机半导体中共存的竞争MFE机制。这种方法提供了一种鲁棒的方法,可用于调节有机半导体中磁阻的大小和符号而不会影响加工的简易性。

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