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Annealing and polycrystallinity effects on the thermal conductivity of supported CVD graphene monolayers

机译:退火和多晶性的影响支持的CVD石墨烯热导率单层膜

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The thermal transport properties of graphene are strongly influenced by its contact environment and the strength of such interactions can be used to tailor these properties. Here we find that annealing suppresses the basal plane thermal conductivity (kappa) of graphene supported on silicon dioxide, due to the increased conformity of graphene to the nanoscale asperities of the substrate after annealing. Intriguingly, increasing the polycrystallinity of graphene, grown by chemical vapor deposition on copper, increases the severity of this suppression after annealing, revealing the role of grain boundaries and associated defects in aiding phonon scattering by the substrate. In highly polycrystalline graphene, the value of. after annealing is comparable to that after significant fluorination of an identical unannealed sample. Our experiments employ the suspended micro-bridge platform for basal plane thermal conductivity measurements. Using xenon difluoride gas for the final release also enables the investigation of thermal transport in graphene in contact with polymers. We find evidence for weaker phonon scattering in graphene, due to a 10 nm thick polymer layer on top compared to the pre-existing silicon dioxide substrate, which is a promising result for flexible electronics applications of graphene.
机译:石墨烯的热输运性质接触环境的强烈影响可以使用,这种相互作用的强度调整这些属性。退火抑制基底平面热电导率(κ)支持的石墨烯二氧化硅,由于增加的一致性石墨烯的纳米级粗糙退火后衬底。增加石墨烯的多晶性,增加了在铜、化学汽相淀积增加抑制后的严重程度退火,晶界的作用在协助声子和相关的缺陷底物的散射。多晶的价值,石墨烯。退火后与重要氟化作用相同的未退火的样品。我们的实验采用micro-bridge暂停平台底面导热系数测量。最终版本还支持的调查在石墨烯接触热传输聚合物。分散在石墨烯,由于10 nm厚上比已有的聚合物层二氧化硅基质,这是一种很有前途的结果灵活的电子产品的应用石墨烯。

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