Features of hole transport and density of localized states in CuCr1-xMgxO2 and CuCr1–yMgyO2/(MgCr2O4)x–y polycrystalline ceramics

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
V.G. Kytin, E.E. Kupriyanov, A. Apreleva, V.A. Kulbachinskii, I.E. Korsakov, T.Yu. Kiseleva, Zh.T. Ismailov
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引用次数: 0

Abstract

Magnesium doped polycrystalline ceramic samples of cooper chromite (I) with 0.6-4.0 at % Mg content have been synthesized. Phase composition of ceramics has been investigated by X-ray diffraction. Temperature dependencies of electrical resistivity and Seebeck coefficient have been measured by four probe method and analyzed in frame of variable range hopping conductivity. The density of localized electronic states and characteristic energy of its variation near Fermi energy have been estimated. It was obtained that the density of localized states at Fermi energy increases with an increase of Mg content, while characteristic energy of variation of localized state density near Fermi energy decreases. Obtained results show that relatively large values of Seebeck coefficient in Mg doped copper chromite (I) can be understood within variable range hopping transport of holes with rapidly increasing density toward valence band maximum.
CuCr1-xMgxO2和CuCr1-yMgyO2 /(MgCr2O4) x-y多晶陶瓷的空穴输运特征和局域态密度
合成了含镁量为0.6 ~ 4.0的铜铬铁矿(I)多晶陶瓷样品。用x射线衍射研究了陶瓷的相组成。用四探针法测量了电阻率和塞贝克系数的温度依赖性,并在变跳程电导率的框架下进行了分析。估计了局域电子态的密度及其在费米能附近变化的特征能量。结果表明,在费米能量处局域态密度随Mg含量的增加而增加,而在费米能量附近局域态密度变化的特征能量减小。结果表明,掺Mg的铜铬铁矿(I)具有较大的塞贝克系数,可以理解为空穴的变范围跳变输运,其密度向价带最大值快速增加。
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