Yang Jun, Qian Xin, Pan Wei, Yang Ronggui, Li Zheng, Han Yi, Zhao Meng, Huang Muzhang, Wan Chunlei
State Key Lab of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing, 100084, P. R. China.
Department of Mechanical Engineering, University of Colorado, Boulder, CO, 80309, USA.
Adv Mater. 2019 Jun;31(24):e1808222. doi: 10.1002/adma.201808222. Epub 2019 Apr 26.
In the pursuit of low thermal conductivity materials for thermal management, one always tries to increase the material entropy by increasing the number of components in the materials to scatter heat-carrying phonons. However, it also drastically increases the technological complexity to synthesize materials with the target complex composition. Here, a material family is presented with simple composition Ln NbO , which only contains binary oxides of Ln O (Ln = Dy, Er, Y, Yb) and Nb O . The thermal conductivities approach the theoretical minimum limit, where the large chemical inhomogeneity due to the charge disorder and fluctuation of bonding length in Ln NbO plays a major role. Despite the simple composition, Ln NbO demonstrates an unprecedentedly high scattering rate of vibration states, as confirmed by the highest elastic constant/thermal conductivity ratio, as well as the diffused wavevector-frequency dispersion. In contrast to the conventional wisdom that low thermal conductivity materials should be explored in the pool of "complex" multiple-component materials, this work points out an avenue to look into materials with simple composition but large internal chemical inhomogeneity, which would be of both scientific and technological significance in the fields of thermal barrier coating, thermoelectric materials, etc.
在追求用于热管理的低热导率材料的过程中,人们总是试图通过增加材料中的组分数量来散射载热声子,从而提高材料的熵。然而,这也极大地增加了合成具有目标复杂组成材料的技术复杂性。在此,展示了一个具有简单组成Ln NbO 的材料家族,它仅包含Ln O(Ln = 镝、铒、钇、镱)和Nb O 的二元氧化物。其热导率接近理论最小极限,其中由于Ln NbO 中的电荷无序和键长波动导致的大化学不均匀性起主要作用。尽管组成简单,但Ln NbO 表现出前所未有的高振动态散射率,这通过最高的弹性常数/热导率比以及漫散的波矢 - 频率色散得到证实。与传统观念认为应在“复杂”的多组分材料中探索低热导率材料不同,这项工作指出了一条研究具有简单组成但内部化学不均匀性大的材料的途径,这在热障涂层、热电材料等领域具有科学和技术意义。