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在离子导体 CuSe 中动态相关性和可能的扩散途径。

Dynamic correlations and possible diffusion pathway in the superionic conductor CuSe.

机构信息

Center for Integrated Materials Research, Department of Chemistry and iNano, Aarhus University, Aarhus 8000, Denmark.

出版信息

IUCrJ. 2023 Mar 1;10(Pt 2):199-209. doi: 10.1107/S2052252523001318.

Abstract

The superionic conductor CuSe has regained interest as a thermoelectric material owing to its low thermal conductivity, suggested to arise from a liquid-like Cu substructure, and the material has been coined a phonon-liquid electron-crystal. Using high-quality three-dimensional X-ray scattering data measured up to large scattering vectors, accurate analysis of both the average crystal structure as well as the local correlations is carried out to shed light on the Cu movements. The Cu ions show large vibrations with extreme anharmonicity and mainly move within a tetrahedron-shaped volume in the structure. From the analysis of weak features in the observed electron density, the possible diffusion pathway of Cu is identified, and it is clear from its low density that jumps between sites are infrequent compared with the time the Cu ions spend vibrating around each site. These findings support the conclusions drawn from recent quasi-elastic neutron scattering data, casting doubt on the phonon-liquid picture. Although there is diffusion of Cu ions in the structure, making it a superionic conductor, the jumps are infrequent and probably not the origin of the low thermal conductivity. From three-dimensional difference pair distribution function analysis of the diffuse scattering data, strongly correlated movements are identified, showing atomic motions which conserve interatomic distances at the cost of large changes in angles.

摘要

由于其低导热率,CuSe 超离子导体作为一种热电材料重新引起了人们的兴趣,这种低导热率被认为源于液态 Cu 亚结构,该材料被称为声子液体电子晶体。使用高质量的三维 X 射线散射数据,测量了大散射矢量,对平均晶体结构和局部相关进行了精确分析,以揭示 Cu 的运动。Cu 离子表现出极大的非谐振动,主要在结构中的四面体形状的体积内移动。从观察到的电子密度的弱特征分析中,确定了 Cu 的可能扩散途径,并且从其低密度可以清楚地看出,与 Cu 离子在每个位置振动的时间相比,Cu 离子在位置之间的跳跃是不频繁的。这些发现支持了最近准弹性中子散射数据得出的结论,对声子液体图像提出了质疑。尽管在结构中存在 Cu 离子的扩散,使其成为超离子导体,但跳跃并不频繁,可能不是低导热率的原因。从漫散射数据的三维差分对分布函数分析中,确定了强烈相关的运动,显示出在保持原子间距离的同时,角度发生了很大变化的原子运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d34c/9980382/c143ea4a5e10/m-10-00199-fig1.jpg

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