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底层基底对支撑的石墨烯纳米通道界面热传输的作用:热半透明性的影响

Role of Underlying Substrates on the Interfacial Thermal Transport in Supported Graphene Nanochannels: Implications of Thermal Translucency.

作者信息

Becerra Diego, Walther Jens H, Zambrano Harvey A

机构信息

Department of Chemical Engineering, Universidad de Concepción, Concepción 4030000, Chile.

Department of Civil and Mechanical Engineering, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.

出版信息

Nano Lett. 2024 Oct 2;24(39):12054-12061. doi: 10.1021/acs.nanolett.4c02106. Epub 2024 Aug 21.

Abstract

We study the role of underlying substrates on interfacial heat transfer within supported graphene nanochannels. Due to graphene's translucency, the underlying substrate, apart from its known hydrodynamic impact on fluid flow, also influences heat transport. We introduce the term "thermal translucency" to describe this phenomenon in the context of interfacial heat transfer. Our findings reveal that the Kapitza resistance, , is dependent on the specific underlying substrate. The specific underlying substrate alters the water-graphene interface potential landscape due to graphene's translucency, leading to a breakdown in the inverse relationship between interfacial water density peaks and values, typically observed at water-graphene and water-graphite interfaces. Remarkably, higher interfacial water density peaks correlate with more ordered energy patterns, not necessarily tied to more hydrophilic substrates as the literature commonly suggests for lower values. The insights provided have implications for controlling and tuning thermal transport and heat storage in nanofluidic devices.

摘要

我们研究了支撑的石墨烯纳米通道中底层基底对界面传热的作用。由于石墨烯的半透明性,除了其对流体流动已知的流体动力学影响外,底层基底还会影响热传输。我们引入“热半透明性”这一术语来描述在界面传热背景下的这一现象。我们的研究结果表明,卡皮查电阻 取决于特定的底层基底。由于石墨烯的半透明性,特定的底层基底改变了水 - 石墨烯界面的势能景观,导致通常在水 - 石墨烯和水 - 石墨界面观察到的界面水密度峰值与 值之间的反比关系失效。值得注意的是,更高的界面水密度峰值与更有序的能量模式相关,并不一定像文献中通常针对较低 值所建议的那样与更亲水的基底相关。所提供的见解对控制和调节纳米流体器件中的热传输和热存储具有重要意义。

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