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Analysis of the anomalies in graphene thermal properties

机译:石墨烯热性能异常分析

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摘要

A comprehensive analysis of the thermal conductivity of graphene under various conditions is presented in this study. Results obtained from different experimental and theoretical methods are analyzed and discussed for numerous conditions such as preparation process, shape, sample size, wavelength, and temperature. Wide discrepancies in the measured thermal conductivity results were found in many studies in the literature. Based on the cited data for the graphene thermal conductivity, the initially measured thermal conductivities appear to be highly overestimated. Majority of the documented results reported lower values of thermal conductivity than the earlier reported results. Furthermore, large differences in the values of the thermal conductivity of graphene were noticed from the cited results using different experimental and numerical methods (0.14 W/m K-20,000 W/m K). This raised an important question on the accuracy of these methods when measuring thermal conductivity of graphene at nanoscale. We have established the existence of a high degree of anomalies in the value of the thermal conductivity of grapheme. Therefore, proper experimental and theoretical studies should be conducted to accurately measure the thermal conductivity of graphene.
机译:本研究对石墨烯在各种条件下的导热系数进行了综合分析。针对各种条件(例如制备过程,形状,样品大小,波长和温度),对从不同实验和理论方法获得的结果进行了分析和讨论。在文献中的许多研究中都发现了热导率测量结果的巨大差异。基于所引用的石墨烯导热系数的数据,最初测得的导热系数似乎被高估了。大多数记录的结果报告的热导率值比早期报告的结果低。此外,使用不同的实验和数值方法(0.14 W / m K-20,000 W / m K),从引用的结果中可以看出石墨烯的导热系数值存在较大差异。当在纳米级测量石墨烯的导热率时,这对这些方法的准确性提出了一个重要的问题。我们已经确定了石墨烯的热导率值存在高度异常。因此,应进行适当的实验和理论研究,以准确测量石墨烯的导热系数。

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