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Titanium contacts to graphene: process-induced variability in electronic and thermal transport

机译:钛触点Graphene:工艺诱导的电子和热运输的可变性

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摘要

Contact resistance (RC) is a major limiting factor in the performance of graphene devices. RC is sensitive to the quality of the interface and the composition of the contact, which are affected by the graphene transfer process and contact deposition conditions. In this work, a linear correlation is observed between the composition of Ti contacts, characterized by x-ray photoelectron spectroscopy, and the Ti/graphene contact resistance measured by the transfer length method. We find that contact composition is tunable via deposition rate and base pressure. Reactor base pressure is found to effect the resultant contact resistance. The effect of contact deposition conditions on thermal transport measured by time-domain thermoreflectance is also reported. Interfaces with higher oxide composition appear to result in a lower thermal boundary conductance. Possible origins of this thermal boundary conductance change with oxide composition are discussed.
机译:接触电阻(RC)是石墨烯装置性能的主要限制因素。 RC对界面的质量和接触的组成敏感,这些接触的构成是由石墨烯转移过程和接触沉积条件的影响。 在这项工作中,在Ti触点的组合物之间观察到线性相关性,其特征在于X射线光电子能谱,以及通过转移长度法测量的Ti /石墨烯接触电阻。 我们发现接触组合物通过沉积速率和基础压力可调。 发现反应器基础压力有效地实现所得的接触电阻。 还报道了接触沉积条件对通过时域热反射率测量的热传输的影响。 具有较高氧化物组成的界面似乎导致较低的热边界电导。 讨论了这种热边界电导变化的可能起源与氧化物组合物。

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