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Kondo-like phonon scattering in thermoelectric clathrates

机译:热电包合物中的近藤状声子散射

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摘要

Crystalline solids are generally known as excellent heat conductors, amorphous materials or glasses as thermal insulators. It has thus come as a surprise that certain crystal structures defy this paradigm. A prominent example are type-I clathrates and other materials with guest-host structures. They sustain low-energy Einstein-like modes in their phonon spectra, but are also prone to various types of disorder and phonon-electron scattering and thus the mechanism responsible for their ultralow thermal conductivities has remained elusive. Our thermodynamic and transport measurements on various clathrate single crystal series and their comparison with ab initio simulations reveal an all phononic Kondo effect as origin. This insight devises design strategies to further suppress the thermal conductivity of clathrates and other related materials classes, with relevance for thermoelectric waste heat recovery and, more generally, phononic applications. It may also trigger theoretical work on strong correlation effects in phonon systems.
机译:结晶固体通常被称为优良的热导体,非晶材料或玻璃作为绝热体。因此令人惊讶的是某些晶体结构违背了这种范例。一个典型的例子是I型笼形物和其他具有客体-宿主结构的材料。它们在其声子光谱中维持低能量的爱因斯坦样态,但也易于出现各种类型的无序和声子-电子散射,因此导致其超低热导率的机理仍然难以捉摸。我们在各种笼形单晶系列上的热力学和输运量测量以及与从头算的模拟比较显示出所有声子近藤效应都为源。该见解提出了设计策略,以进一步抑制包合物和其他相关材料类别的热导率,这与热电废热回收以及更普遍的声子应用有关。它也可能触发有关声子系统中强相关效应的理论研究。

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