石墨烯中用于能量应用的声子输运操纵和控制

Xinwei Wang
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摘要

石墨烯因其优异的电子和热性能以及在纳米电子学和可再生能源收集/转换方面的巨大应用潜力而备受关注。本次讲座将涵盖在ISU微/纳米尺度热科学实验室进行的关于石墨烯中声子能量传输的实验和理论工作,以及操纵/定制它以满足能源应用需求的新方法。对于声子输运,重点研究了石墨烯对热脉冲的动态瞬态响应,揭示了声子能量耦合和三种声子模式在能量传递中的独特行为。对于石墨烯应用,详细研究了声子在结构弯曲区域的行为,以揭示局部模式守恒并评估局部弯曲阻力。通过实验和建模相结合的方法研究了石墨烯-衬底界面中的能量传输,以了解石墨烯基纳米电子学中涉及的局部能量耗散。我们最近的工作有两个关于石墨烯中能量操纵的新发现:1)声子能量可以在模式范围内反转,实现能量分离、转换和ps级能量存储;2)通过仔细的声子操纵,石墨烯可以同时在两个相反的方向传导热量,为空间能量转换提供了一种新的方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phonon transport manipulation and control in graphene for energy applications
Graphene has attracted significant attention due to its extraordinary electronic and thermal properties and the great application potential in nanoelectronics and renewable energy harvesting/conversion. This talk will cover the experimental and theoretical work that has been conducted in the Micro/Nanoscale Thermal Science Laboratory at ISU on phonon energy transport in graphene and novel approaches to manipulating/tailoring it to meet the need in energy applications. For phonon transport, the research is focused on the dynamic transient response of graphene to thermal impulse to reveal the phonon energy coupling and the distinctive behavior of the three phonon modes in transferring energy. For graphene applications, the phonon behavior across the structure-bent area is studied in detail to reveal the local mode- conservation and evaluate the local bending resistance. The energy transport in graphene- substrate interfaces is studied by combined experiment and modeling to understand the local energy dissipation that will be involved in graphene-based nanoelectronics. Our most recent work has made two new discoveries about energy manipulation in graphene: 1) the phonon energy can be inversed mode-wide to achieve energy separation, conversion, and ps-scale energy storage, 2) through careful phonon manipulation, graphene can conduct heat in two opposite directions simultaneously, proposing a novel way for energy conversion in space.
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