Koza Michael Marek, Johnson Mark Robert, Viennois Romain, Mutka Hannu, Girard Luc, Ravot Didier
Institut Laue Langevin, 6 Rue Jules Horowitz, B.P. 156, 38042 Grenoble, Cedex 9, France.
Nat Mater. 2008 Oct;7(10):805-10. doi: 10.1038/nmat2260. Epub 2008 Aug 31.
The material class of skutterudites is believed to have strong potential for thermoelectric application due to the very low thermal conductivity of the filled structures. It is generally assumed that the atoms filling the skutterudite cages act as 'rattlers' and essentially induce a disordered lattice dynamics referred to as 'phonon glass'. Here, we present neutron spectroscopy experiments and ab initio computational work on phonons in LaFe(4)Sb(12) and CeFe(4)Sb(12). Our results give unequivocal evidence of essentially temperature-independent lattice dynamics with well-defined phase relations between guest and host dynamics, indicative of a quasi-harmonic coupling between the guests and the host lattice. These conclusions are in disagreement with the 'phonon glass' paradigm based on individual 'rattling' of the guest atoms. These findings should have an essential impact on the design and improvement of thermoelectric materials and on the development of microscopic models needed for these efforts.
方钴矿材料类由于填充结构的热导率极低,被认为在热电应用方面具有强大潜力。通常认为,填充方钴矿笼状结构的原子起到“振动子”的作用,并本质上引发一种被称为“声子玻璃”的无序晶格动力学。在此,我们展示了关于LaFe(4)Sb(12)和CeFe(4)Sb(12)中声子的中子光谱实验和从头算计算工作。我们的结果明确证明了本质上与温度无关的晶格动力学,客体和主体动力学之间具有明确的相位关系,这表明客体与主体晶格之间存在准谐波耦合。这些结论与基于客体原子个体“振动”的“声子玻璃”范式不一致。这些发现应该会对热电材料的设计和改进以及这些努力所需的微观模型的发展产生重要影响。