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Localised Ag+ vibrations at the origin of ultralow thermal conductivity in layered thermoelectric AgCrSe2

机译:层状热电AgCrSe2中超低热导率的局部Ag +振动

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摘要

In materials science, the substructure approach consists in imagining complex materials in which a particular property is associated with a distinct structural feature, so as to combine different chosen physical characteristics, which otherwise have little chance to coexist. Applied to thermoelectric materials, it has been used to achieve simultaneously phonon-glass and electron-crystal properties. Mostly studied for its superionic conductivity, AgCrSe2 is a naturally layered compound, which achieves very low thermal conductivity, ~0.4 W.K−1.m−1 at RT (room temperature), and is considered a promising thermoelectric. The Cr atoms of the [CrSe2]∞ layer bear a spin S = 3/2, which orders below TN = 55 K. Here we report low temperature inelastic neutron scattering experiments on AgCrSe2, alongside the magnetic field evolution of its thermal and electrical transport. We observe a very low frequency mode at 3 meV, ascribed to large anharmonic displacements of the Ag+ ions in the [Ag]∞ layer, and 2D magnetic fluctuations up to 3 TN in the chromium layer. The low thermal conductivity of AgCrSe2 is attributed to acoustic phonon scattering by a regular lattice of Ag+ oscillating in quasi-2D potential wells. These findings highlight a new way to achieve localised phonon modes in a perfectly crystalline solid.
机译:在材料科学中,子结构方法包括想象复杂的材料,其中特定的属性与明显的结构特征相关联,以便组合选择的不同物理特性,否则它们很少共存。应用于热电材料,已被用来同时实现声子玻璃和电子晶体性能。对AgCrSe2的超离子电导率进行了最多研究,它是一种天然层状化合物,在室温(室温)下,其导热率非常低,约为0.4 WK -1 .m -1 ,并被认为是很有前途的热电。 [CrSe2]∞层的Cr原子具有自旋S = 3/2,其数量级低于TN = 55 K.在此我们报道了AgCrSe2的低温非弹性中子散射实验,以及其热和电传输的磁场演化。我们观察到在3 meV处的非常低的频率模式,这归因于[Ag]∞层中Ag + 离子的大的非谐波位移,以及铬层中高达3 TN的2D磁涨落。 AgCrSe2的低热导率归因于准2D势阱中Ag + 的规则晶格振动引起的声子散射。这些发现突显了一种在完全结晶的固体中实现局部声子模的新方法。

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