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A Novel Solid-State Thermal Rectifier Based On Reduced Graphene Oxide

机译:基于还原氧化石墨烯的新型固态热整流器

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摘要

Recently, manipulating heat transport by phononic devices has received significant attention, in which phonon – a heat pulse through lattice, is used to carry energy. In addition to heat control, the thermal devices might also have broad applications in the renewable energy engineering, such as thermoelectric energy harvesting. Elementary phononic devices such as diode, transistor and logic devices have been theoretically proposed. In this work, we experimentally create a macroscopic scale thermal rectifier based on reduced graphene oxide. Obvious thermal rectification ratio up to 1.21 under 12 K temperature bias has been observed. Moreover, this ratio can be enhanced further by increasing the asymmetric ratio. Collectively, our results raise the exciting prospect that the realization of macroscopic phononic device with large-area graphene based materials is technologically feasible, which may open up important applications in thermal circuits and thermal management.
机译:近年来,通过声子装置操纵热传输已受到广泛关注,其中声子(通过晶格的热脉冲)被用来携带能量。除热控制外,热装置还可能在可再生能源工程中具有广泛的应用,例如热电能量收集。理论上已经提出了基本的声子器件,例如二极管,晶体管和逻辑器件。在这项工作中,我们实验性地创建了基于还原氧化石墨烯的宏观热整流器。在12 K的温度偏置下,明显的热整流比高达1.21。此外,可以通过增加不对称比率来进一步提高该比率。总体而言,我们的结果提出了令人振奋的前景,即使用大面积石墨烯基材料实现宏观声子装置在技术上是可行的,这可能会在热回路和热管理中开拓重要的应用。

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