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首页> 外文期刊>Journal of molecular graphics & modelling >Thermal conductivity and heat transport properties of nitrogen-doped graphene
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Thermal conductivity and heat transport properties of nitrogen-doped graphene

机译:氮掺杂石墨烯的导热系数和传热性能

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In the present study, the thermal conductivity (TC) and heat transport properties of nitrogen doped graphene (N-graphene) were investigated as a function of temperature (107-400 K) and N-doped concentration (0.0-7.0%) using equilibrium molecular dynamics simulation based on Green-Kubo method. According to the results, a drastic decline in TC of graphene observed at very low N-doped concentration (0.5 and 1.0%). Substitution ofjust 1.0% of carbon atoms with nitrogens causes a 77.2, 65.4, 59.2, and 53.7% reduction in IC at 107, 200, 300, and 400 K, respectively. The values of TC of N-graphene at different temperatures approach to each other as N-doped concentration increases. The results also indicate that TC of N-graphene is much less sensitive to temperature compared with pristine graphene and the sensitivity decreases as N-doped concentration increases. The phonon-phonon scattering relaxation times and the phonon mean free path of phonons were also calculated. The contribution of high frequency optical phonons for pristine graphene and N-graphene with 7.0% N-doped concentration is 0-2% and 4-8%, respectively. These findings imply that it is potentially feasible to control heat transfer on the nanoscale when designing N-graphene based thermal devices. (C) 2015 Elsevier Inc. All rights reserved.
机译:在本研究中,使用平衡法研究了氮掺杂石墨烯(N-石墨烯)的导热系数(TC)和传热性能与温度(107-400 K)和氮掺杂浓度(0.0-7.0%)的关系。 Green-Kubo方法的分子动力学模拟。根据结果​​,在非常低的N掺杂浓度(0.5和1.0%)下观察到石墨烯的TC急剧下降。仅用氮取代仅1.0%的碳原子会导致在107、200、300和400 K时IC分别减少77.2、65.4、59.2和53.7%。随着N掺杂浓度的增加,N-石墨烯在不同温度下的TC值彼此接近。结果还表明,与原始石墨烯相比,N-石墨烯的TC对温度的敏感性要低得多,并且随着N掺杂浓度的增加,敏感性降低。还计算了声子-声子的散射弛豫时间和声子的平均声子自由程。氮掺杂浓度为7.0%的原始石墨烯和N-石墨烯的高频光学声子的贡献分别为0-2%和4-8%。这些发现暗示在设计基于N-石墨烯的热装置时,控制纳米级的热传递是潜在可行的。 (C)2015 Elsevier Inc.保留所有权利。

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