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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Electronic band structure and low-temperature transport properties of the type-I clathrate Ba8NixGe46-x-y square(y)
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Electronic band structure and low-temperature transport properties of the type-I clathrate Ba8NixGe46-x-y square(y)

机译:I型笼形Ba8NixGe46-x-y平方的电子能带结构和低温传输性质(y)

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We present the evolution of the low-temperature thermodynamic, galvanomagnetic and thermoelectric properties of the type-I clathrate Ba8NixGe46-x-y square(y) with the Ni concentration studied on polycrystalline samples with 0.0 <= x <= 6.0 by means of specific heat, Hall effect, electrical resistivity, thermopower and thermal conductivity measurements in the 2-350 K temperature range and supported by first-principles calculations. The experimental results evidence a 2a x 2a x 2a supercell described in the space group Ia (3) over bard for x <= 1.0 and a primitive unit cell a x a x a (space group Pm (3) over barn) above this Ni content. This concentration also marks the limit between a regime where both electrons and holes contribute to the electrical conduction (x <= 1.0) and a conventional, single-carrier regime (x > 1.0). This evolution is traced by the variations in the thermopower and Hall effect with x. In agreement with band structure calculations, increasing the Ni content drives the system from a nearly-compensated semimetallic state (x = 0.0) towards a narrow-band-gap semiconducting state (x = 4.0). A crossover from an n-type to a p-type conduction occurs when crossing the x = 4.0 concentration i.e. for x = 4.1. The solid solution Ba8NixGe46-x-y square(y) therefore provides an excellent experimental platform to probe the evolution of the peculiar properties of the parent type-I clathrate Ba8Ge43 square(3) upon Ge/Ni substitution and filling up of the vacancies, which might be universal among the ternary systems at low substitution levels.
机译:我们介绍了I型笼形Ba8NixGe46-xy square(y)的低温热力学,电磁和热电性质的演化,并通过比热通过0.0≤x≤6.0的多晶样品研究了Ni浓度,在2-350 K温度范围内进行霍尔效应,电阻率,热功率和热导率测量,并得到第一性原理计算的支持。实验结果表明,在空间群Ia(3)中描述了一个2a x 2a x 2a超级电池,其中x <= 1.0时在bard上有描述,在该Ni含量之上有一个基本单位单元a x a x a(空间模型Pm(3)在谷仓上)。该浓度还标志着电子和空穴都有助于导电的状态(x <= 1.0)和传统的单载流子状态(x> 1.0)之间的界限。这种变化可以通过热功率和霍尔效应随x的变化来追踪。与能带结构计算一致,增加Ni含量会使系统从几乎补偿的半金属态(x = 0.0)变为窄带隙半导体态(x = 4.0)。当跨越x = 4.0浓度时,即对于x = 4.1,会发生从n型到p型导电的交叉。因此,固溶体Ba8NixGe46-xy square(y)提供了一个极好的实验平台,以探讨在Ge / Ni取代和填充空位时母体I型笼形Ba8Ge43 square(3)的特殊性质的演化,这可能在低取代水平的三元体系中具有普遍性。

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