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Monolayered Graphene Oxide as a Low Contact Resistance Protection Layer in Alkanethiol Solid-State Devices

机译:单层石墨烯氧化物作为链烷醇固体装置中的低接触电阻保护层

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摘要

Vapor deposition of metals has long been the primary method for making contact with organic molecules in electronic devices in a fast and scalable manner. However, direct metal evaporation has proven to be the primary cause of device failure in solid-state molecular devices due to the degradation of the self assembled molecular monolayers. The introduction of a protective interlayer between the molecular monolayer and the evaporated top electrode greatly improves the yield of working devices but at the cost of an increased internal contact resistance that depends on the nature of the interlayer and its interface with both organic molecules and metal top electrode. In the present work, we investigate the performance of a single layered graphene oxide as an atomically thin interlayer in solid-state molecular devices. We show that a single layered graphene oxide sheet is sufficient to protect an organic monolayer of alkane thiols from metal-induced degradation and short-circuiting. Remarkably, and despite graphene oxide being an insulating material, the contact resistance in our devices with a graphene oxide as a protective interlayer is similar to that of pure metal/molecule/metal junctions. We interpret this observation as graphene oxide effectively becoming part of the top electrode. The graphene oxide monolayer is thus a very promising candidate as a protective interlayer in solid-state molecular devices.
机译:金属的气相沉积一直是以快速可扩展的方式与电子设备中的有机分子接触的主要方法。然而,由于自组装的分子单层的降解,已证明直接金属蒸发是固态分子器件中器件失效的主要原因。在分子单层和蒸发的顶部电极之间引入保护性层间大大提高了工作装置的产率,而是提高了内部接触电阻的成本,这取决于中间层的性质及其与有机分子和金属顶部的界面的性质电极。在本作本作中,我们研究了单层石墨烯氧化物作为固态分子装置中的原子薄层层的性能。我们表明单层石墨烯氧化物片足以保护来自金属诱导的降解和短路的有机单层烷烃硫醇。显着性,尽管石墨烯是绝缘材料,但是由于氧化石墨烯作为保护层的氧化物的装置中的接触电阻类似于纯金属/分子/金属连接物。我们将该观察者解释为石墨烯氧化物有效地成为顶电极的一部分。因此,石墨烯单层是固态分子装置中的非常有前景的候选者作为保护性介质。

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