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Thermal and electronic transport characteristics of highly stretchable graphene kirigami

机译:热和电子传输特性高度可伸缩的石墨烯的剪纸艺术

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摘要

For centuries, cutting and folding papers with special patterns have been used to build beautiful, flexible and complex three-dimensional structures. Inspired by the old idea of kirigami (paper cutting), and the outstanding properties of graphene, recently graphene kirigami structures were fabricated to enhance the stretchability of graphene. However, the possibility of further tuning the electronic and thermal transport along the 2D kirigami structures has remained original to investigate. We therefore performed extensive atomistic simulations to explore the electronic, heat and load transfer along various graphene kirigami structures. The mechanical response and thermal transport were explored using classical molecular dynamics simulations. We then used a real-space Kubo-Greenwood formalism to investigate the charge transport characteristics in graphene kirigami. Our results reveal that graphene kirigami structures present highly anisotropic thermal and electrical transport. Interestingly, we show the possibility of tuning the thermal conductivity of graphene by four orders of magnitude. Moreover, we discuss the engineering of kirigami patterns to further enhance their stretchability by more than 10 times as compared with pristine graphene. Our study not only provides a general understanding concerning the engineering of electronic, thermal and mechanical response of graphene, but more importantly can also be useful to guide future studies with respect to the synthesis of other 2D material kirigami structures, to reach highly flexible and stretchable nanostructures with finely tunable electronic and thermal properties.
机译:几个世纪以来,切割和折叠的论文特殊的模式被用来构建美丽的、灵活的和复杂的三维结构。(剪纸)和优秀的属性最近的石墨烯,石墨烯剪纸艺术结构的提高石墨烯的拉伸性。进一步优化电子和可能性热传输的2 d剪纸艺术结构一直保持最初的调查。因此,我们进行广泛的原子论的模拟探索电子,和热荷载传递各种石墨烯剪纸艺术结构。使用经典的分子运输进行了探讨动力学模拟。Kubo-Greenwood形式调查石墨烯的电荷传输特性剪纸艺术。剪纸艺术高度各向异性结构的礼物热能和电力传输。我们展示优化热的可能性石墨烯的导电性的四个订单大小。剪纸艺术模式的进一步提高拉伸性的10倍以上与原始石墨烯。提供了一个通用的理解有关电子工程,热能和机械石墨烯的反应,但更重要的是可以也是有用的指导未来的研究尊重其他2 d的合成材料剪纸艺术结构,达到高度灵活可伸缩的纳米结构精确可调电子和热性能。

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