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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Cu Insertion Into the Mo-12 Cluster Compound Cs2Mo12Se14: Synthesis, Crystal and Electronic Structures, and Physical Properties
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Cu Insertion Into the Mo-12 Cluster Compound Cs2Mo12Se14: Synthesis, Crystal and Electronic Structures, and Physical Properties

机译:铜插入Mo-12簇化合物Cs2Mo12Se14:合成,晶体和电子结构,以及物理性质

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摘要

Mo-based cluster compounds are promising materials for high-temperature thermoelectric applications due to their intrinsic, extremely low thermal conductivity values. In this study, polycrystalline cluster compounds Cs2CuxMo12Se14 were prepared for a wide range of Cu contents (0 <= x <= 2). All samples crystallize isostructurally in the trigonal space group R (3) over bar. The position of the Cu atoms in the unit cell was determined by X-ray diffraction on a single-crystalline specimen indicating that these atoms fill the empty space between the Mo-Se clusters. Density functional theory calculations predict a metallic ground state for all compositions, in good agreement with the experimental findings. Magnetization measurements indicate a rapid suppression of the superconducting state that develops in the x = 0.0 sample upon Cu insertion. Transport properties measurements, performed in a wide temperature range (2-630 K) on the two end-member compounds x = 0 and x = 2, revealed a multiband electrical conduction as shown by sign reversal of the thermopower as a function of temperature.
机译:Mo基团簇化合物因其固有的极低热导率值而成为用于高温热电应用的有前途的材料。在这项研究中,制备了多晶簇化合物Cs2CuxMo12Se14,用于宽范围的Cu含量(0 <= x <= 2)。所有样品在bar上的三角空间组R(3)中均等结晶。通过在单晶样品上进行X射线衍射确定晶胞中Cu原子的位置,表明这些原子填充了Mo-Se簇之间的空白空间。密度泛函理论计算可预测所有成分的金属基态,与实验结果非常吻合。磁化测量表明,在插入Cu后,x = 0.0样品中形成的超导状态得到了快速抑制。在两个端基化合物x = 0和x = 2的较宽温度范围(2-630 K)中进行的传输性质测量显示,多谱带电导率显示为热能的符号反转随温度的函数。

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