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Single-Material Graphene Thermocouples

机译:单材料石墨烯热电偶

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摘要

On-chip temperature sensing on a micro- to nanometer scale is becoming more desirable as the complexity of nanodevices keeps increasing and their downscaling continues. The continuation of this trend makes thermal probing and management more and more challenging. This highlights the need for scalable and reliable temperature sensors, which have the potential to be incorporated into current and future device structures. Here, it is shown that U-shaped graphene stripes consisting of one wide and one narrow leg form a single material thermocouple that can function as a self-powering temperature sensor. It is found that the graphene thermocouples increase in sensitivity with a decrease in leg width, due to a change in the Seebeck coefficient, which is in agreement with previous findings and report a maximum sensitivity of Delta S approximate to 39 mu V K-1.
机译:随着纳米纳米图的复杂性保持增加并且其较低的延续,在微纳米尺度上的片上温度感应变得更加理想。这种趋势的延续使热探测和管理越来越具有挑战性。这突出了对可伸缩和可靠的温度传感器的需求,该温度传感器具有潜在的潜力,可以融入电流和未来的设备结构中。这里,示出了由一个宽和一个窄腿组成的U形石墨烯条纹,形成可以用作自动温度传感器的单个材料热电偶。结果,由于塞贝克系数的变化,石墨烯热电偶随着腿部宽度的变化而导致的腿部宽度降低,这与先前的发现一致,并报告ΔS的最大敏感性近似为39μmVk-1。

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