Lattice thermal conductivity and phonon properties of polycrystalline graphene.

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY Nanoscale Advances Pub Date : 2024-12-06 DOI:10.1039/d4na00772g
Kunwar Abhikeern, Amit Singh
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Abstract

Using the spectral energy density method, we predict the phonon scattering mean lifetimes of polycrystalline graphene (PC-G) having polycrystallinity only along the x-axis with seven different misorientation (tilt) angles at room temperature. Contrary to other studies on PC-G samples, our results indicate a strong dependence of the thermal conductivity (TC) on the tilt angles which we attribute to careful preparation of our grain boundaries-based samples without introducing any local strains and ensuring periodic boundary conditions for the supercells along the x and y axes. We also show that the square of the group velocity components along x and y axes and the phonon lifetimes are uncorrelated and the phonon density of states are almost the same for all samples with different tilt angles. Further, a distribution of the group velocity component along x or y axis as function of normal frequency is found to be exponentially decaying whereas that of the phonon lifetime showed piecewise constant function behavior with respect to the frequency. We provide parameters for these distribution functions and suggest another measure of the TC based on these distributions. Finally, we perform a size-dependent analysis for two tilt angles, 21.78° and 32.20°, and find that bulk TC components decrease by around 34% to 62% in comparison to the bulk TC values of the pristine graphene. Our analysis reveals intriguing insights into the interplay between grain orientation, phonon scattering and thermal conductivity in graphene.

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多晶石墨烯的晶格热导率和声子性质。
利用光谱能量密度法,我们预测了室温下具有多晶性的多晶石墨烯(PC-G)在7种不同取向(倾斜)角度下沿x轴的声子散射平均寿命。与PC-G样品的其他研究相反,我们的结果表明,热导率(TC)对倾斜角度有很强的依赖性,我们将其归因于精心制备的基于晶界的样品,而不引入任何局部应变,并确保超级细胞沿x和y轴的周期性边界条件。我们还表明,群速度分量沿x和y轴的平方与声子寿命不相关,并且对于不同倾斜角度的所有样品,态声子密度几乎相同。此外,群速度分量沿x或y轴的分布作为正常频率的函数被发现呈指数衰减,而声子寿命的分布则显示出关于频率的分段常数函数行为。我们为这些分布函数提供了参数,并提出了基于这些分布的另一种TC度量。最后,我们对两个倾斜角度(21.78°和32.20°)进行了尺寸相关分析,发现与原始石墨烯的体TC值相比,体TC成分减少了约34%至62%。我们的分析揭示了石墨烯中晶粒取向、声子散射和导热性之间相互作用的有趣见解。
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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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