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Helium diffraction and acoustic phonons of graphene grown on copper foil

机译:铜箔上生长的石墨烯的氦衍射和声子

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We report helium diffraction from graphene grown by chemical vapour deposition (CVD) using copper foil. This method reveals acoustic phonons, which are physically important to thermal conductance as well as a sensitive probe of graphene's interactions with the underlying substrate. Helium diffraction is made possible by the high quality of graphene produced by a recently reported "peel-off method". The graphene lattice parameter was found to remain constant in the temperature range between 110 and 500 K. The measured parabolic dispersion of the flexural mode along (Gamma) over bar (M) over bar allows determining the bending rigidity k = ( 1.30 +/- 0.15) eV, and the graphene-Cu coupling strength g = ( 5.7 +/- 0.4) x 10(19) N/m(3). Unlike analytics employing atomic resolution microscopy, we obtain information on the atomic-scale quality of the graphene over mm length scales, suggesting the potential for Helium atom scattering to become an important tool for controlling the quality of industrially produced graphene. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们报告了使用铜箔通过化学气相沉积(CVD)生长的石墨烯产生的氦衍射。该方法揭示了声子,声子对热导在物理上很重要,并且是石墨烯与下层基材相互作用的灵敏探针。通过最近报道的“剥离法”产生的高质量石墨烯,使得氦衍射成为可能。发现石墨烯晶格参数在110至500 K的温度范围内保持恒定。沿着(Gamma)沿棒(M)沿棒的(Gamma)测得的弯曲模式的抛物线色散可以确定弯曲刚度k =(1.30 +/-石墨烯-铜的耦合强度g =(5.7 +/- 0.4)x 10(19)N / m(3)。与采用原子分辨率显微镜的分析方法不同,我们获得了毫米长度尺度上石墨烯的原子尺度质量信息,这表明氦原子散射的潜力成为控制工业生产石墨烯质量的重要工具。 (C)2015 Elsevier Ltd.保留所有权利。

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