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首页> 外文期刊>ACS applied materials & interfaces >Anisotropic Thermal Transport in Spray-Coated Single-Phase Two-Dimensional Materials: Synthetic Clay Versus Graphene Oxide
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Anisotropic Thermal Transport in Spray-Coated Single-Phase Two-Dimensional Materials: Synthetic Clay Versus Graphene Oxide

机译:喷涂单相二维材料的各向异性热输送:合成粘土与石墨烯氧化物

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摘要

Directional control on material properties such as mechanical moduli or thermal conductivity are of paramount importance for the development of nanostructured next-generation devices. Two-dimensional materials are particularly interesting in this context owing to their inherent structural anisotropy. Here, we compare graphene oxide (GO) and synthetic clay sodium fluorohectorite (Hec) with respect to their thermal transport properties. The unique sheet structure of both allows preparation of highly ordered Bragg stacks of these pure materials. The thermal conductivity parallel to the platelets strongly exceeds that perpendicular to them. We find a significant difference in the performance between GO and synthetic clay. Our analysis of the textured structure, size of the platelets, and chemical composition shows that Hec is a superior two-dimensional component to GO. Consequently, synthetic clay is a promising material for thermal management applications in electronic devices where electrically insulating materials are prerequisites.
机译:诸如机械模或导热率的材料性质的定向控制对于纳米结构的下一代装置的开发至关重要。由于其固有的结构各向异性,在这种情况下,二维材料特别有趣。在此,我们将石墨烯(GO)和合成粘土钠氟层(HEC)相对于其热传输性能进行比较。两者的独特板材结构允许制备这些纯材料的高度有序的布拉格堆叠。平行于血小板的导热率强烈超过其垂直于它们。我们在Go和合成粘土之间的表现中找到了显着差异。我们对纹理结构,血小板尺寸和化学组成的分析表明HEC是迄今为止的高级二维组件。因此,合成粘土是用于电子设备中的热管理应用的有希望的材料,其中电绝缘材料是先决条件。

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