Thermal conductivities of ultra-lightweight C12-based type-VII clathrates: an ab initio and comparative study

Guohui Zheng
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Abstract

Abstract Caged carbon clathrates may have profound applications in thermoelectrics due to their inherent host–guest relations. Using ab initio techniques, we investigate the electronic and phononic properties of type-VII C 12 clathrate, which is a prototype of the widely studied ternary X –B–C clathrate, and tune its properties using lithium atom filling and boron atom substitution. Upon the introduction of pairwise B substition and a Li filler, the half-filled and fully filled structures retain their semiconducting characteristics due to balanced electron counts; however, their indirect band gaps are reduced. By comparing the phonon and thermal properties of filled and empty structures, we show that B substitution and Li fillers lift the phonon degeneracies, increase the three-phonon scattering phase spaces and eventually cause tenfold reductions in the relaxation time of phonons. The Li filler-induced rattling of phonon modes and resonant scattering channels, which are validated by the peak features of phonon density of states and scattering rates, efficiently reduce the room temperature thermal conductivity for fully filled structures. Our findings indicate the efficiency of heteroatomic substitution and fillers to engineer the phonon and thermal properties of carbon-based clathrates.
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超轻c12基vii型包合物的热导率:从头计算与比较研究
笼状碳包合物由于其固有的主客体关系在热电学中有着广泛的应用。本文采用从头算技术研究了X -B-C三元包合物的原型——vii型c12包合物的电子和声子性质,并利用锂原子填充和硼原子取代对其性质进行了调整。在引入B取代和Li填料后,由于电子计数平衡,半填充和全填充结构保持了它们的半导体特性;然而,它们的间接带隙减小了。通过比较填充和空结构的声子和热性质,我们发现B取代和Li填充提高了声子简并,增加了三声子散射相空间,最终使声子的弛豫时间减少了十倍。通过声子态密度和散射率的峰值特征验证了Li填料引起的声子模式和共振散射通道的咔嗒声,有效地降低了完全填充结构的室温导热系数。我们的研究结果表明,杂原子取代和填料在设计碳基包合物的声子和热性能方面是有效的。
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