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Phononics of Graphene and Related Materials

机译:石墨烯和相关材料的声音学

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In this Perspective, I present a concise account concerning the emergence of the research field investigating the phononic and thermal properties of graphene and related materials, covering the refinement of our understanding of phonon transport in two-dimensional material systems. The initial interest in graphene originated from its unique linear energy dispersion for electrons, revealed in exceptionally high electron mobility, and other exotic electronic and optical properties. Electrons are not the only elemental excitations influenced by a reduction in dimensionality. Phonons-quanta of crystal lattice vibrations-also demonstrate an extreme sensitivity to the number of atomic planes in the few-layer graphene, resulting in unusual heat conduction properties. I outline recent theoretical and experimental developments in the field and discuss how the prospects for the mainstream electronic application of graphene, enabled by its high electron mobility, gradually gave way to emerging real-life products based on few-layer graphene, which utilize its unique heat conduction rather than its electrical conduction properties.
机译:在这种观点中,我提出了一份关于研究石墨烯和相关材料的帖子和热性质的研究领域的出现的简明账户,涵盖了我们对二维材料系统中的声子传输的理解的改进。石墨烯的初始兴趣源于其用于电子的独特线性能量分散,在异常高的电子迁移率和其他异国电子和光学性质中揭示。电子不是受维度降低影响的唯一元素激励。晶格振动的声子 - 还表明了对几层石墨烯中的原子平面数的极端敏感性,导致不寻常的导热性能。我概述了该领域的最近理论和实验发展,并讨论了石墨烯主流电子应用的前景如何实现其高电子迁移率,逐渐向新出现的基于几层石墨烯的现实生活产品,利用其独特热传导而不是电传动性能。

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