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Joule heater based on single-layer graphene

机译:基于单层石墨烯的焦耳加热器

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摘要

In this work, we have studied the characteristics of a heater based on single-layer graphene obtained by CVD using methane as the carbon precursor and using copper as a catalytic substrate. Synthesized graphene was transferred onto an EVA/PET substrate using a heat press printing method. A theoretical model of heating a polycrystalline graphene film was developed. The temperature gradients in graphene crystallites were estimated based on the model. It was shown that local overheating of graphene crystallite boundaries is the main cause of damage for the graphene-based heater. In order to enhance the power of graphene heaters, it is necessary to reduce the size of 2D graphene crystallites that make up the coating.
机译:在这项工作中,我们研究了基于CVD获得的单层石墨烯的加热器的特性,使用甲烷作为碳前体,并使用铜作为催化基材。 使用热压印刷方法将合成的石墨烯转移到EVA / PET基板上。 开发了加热多晶石墨烯膜的理论模型。 基于模型估计石墨烯晶体中的温度梯度。 结果表明,石墨烯晶体边界的局部过热是基于石墨烯的加热器损坏的主要原因。 为了提高石墨烯加热器的功率,有必要减小构成涂层的2D石墨烯微晶的尺寸。

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