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Bond saturation significantly enhances thermal energy transport in two-dimensional pentagonal materials

机译:粘合饱和度显着增强了二维五边形材料中的热能输送

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Thermal transport in nanoscale two-dimensional (2D) materials is of great scientific interest and has practical implications for energy related applications like thermal management of energy devices, composite battery materials and on-board thermoelectric power generation for sensors. The abilities to manipulate thermal transport in 2D materials is thus highly desirable for future nano energy technologies. In this work, we identify a general rule for controlling the thermal transport in 2D pentagonal materials through bond saturation. We use first-principles calculations to investigate the phonon properties of a series of pentagonal materials, including penta-graphene (PG), hydrogenated PG (h-PG) and fluorinated PG (f-PG), and find that the bond saturation of the carbon atoms through functionalization can reduce the bond anharmonicity and thus increase the phonon lifetime. We can follow this rule to predict very high thermal conductivity of other pentagonal structures with saturated bonds, including penta-CN2 (1027 W/mK) and two three-dimensional counterparts of PG called T12-carbon (819 W/mK) and AA T12-carbon (1049 W/mK). Moreover, similar trend of bond saturation-induced thermal conductivity enhancement can be found in other 2D pentagonal materials, such as penta-SiC2 and penta-SiN2. The results from this work unveil a general bonding-thermal transport relation for 2D materials, which can provide important guidance for designing novel materials with desirable thermal transport properties for energy applications.
机译:纳米级二维(2D)材料的热传输具有很大的科学兴趣,并且对能量装置的热管理等能源相关应用具有实际意义,传感器的复合电池材料和车载热电发电。因此,对于未来的纳米能量技术,非常希望操纵2D材料中热传输的能力。在这项工作中,我们通过粘合饱和来确定一种控制2D五角形材料中热传输的一般规则。我们使用第一原理计算来研究一系列五角形材料的声子特性,包括五菌 - 石墨烯(PG),氢化PG(H-PG)和氟化PG(F-PG),并发现键饱和度通过官能化的碳原子可以减少债券Anharmonicity,从而增加声子寿命。我们可以遵循该规则来预测具有饱和键的其他五角形结构的非常高的导热率,包括Penta-CN2(1027W / MK)和PG的两个三维对应于称为T12-碳(819W / MK)和AA T12 - 碳(1049 W / MK)。此外,在其他2D五角形材料中可以发现粘合饱和诱导的导热率增强的类似趋势,例如Penta-SiC2和Penta-Sin2。该工作的结果揭示了用于2D材料的一般粘接 - 热传输关系,这可以为设计具有可期望的热传输性能的新型材料来提供重要的引导。

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