Investigation of the transport properties of cation-substituted solid solutions [Yb.sub.x][Mn.sub.1-x]S
The electrical properties and thermopower of solid solutions [Yb.sub.x][Mn.sub.1-x]S with substitution concentrations 0 < x [less than or equal to] 0.2 have been studied in the temperature range of 77-1050 K. It has been found that the electrical conductivity has a semiconducting character, and t...
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creator | Aplesnin, S.S Romanova, O.B Khar'kov, A.M Galyas, A.I |
description | The electrical properties and thermopower of solid solutions [Yb.sub.x][Mn.sub.1-x]S with substitution concentrations 0 < x [less than or equal to] 0.2 have been studied in the temperature range of 77-1050 K. It has been found that the electrical conductivity has a semiconducting character, and the thermopower changes its sign from positive to negative as the substitution concentration in [Yb.sub.x][Mn.sub.1-x]S increases. It has been established that the activation energy decreases with increasing ytterbium concentration. The model of impurity donor 4f states satisfactorily agrees with the data on the electrical resistivity and the thermopower. |
doi_str_mv | 10.1134/S1063783415050029 |
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It has been found that the electrical conductivity has a semiconducting character, and the thermopower changes its sign from positive to negative as the substitution concentration in [Yb.sub.x][Mn.sub.1-x]S increases. It has been established that the activation energy decreases with increasing ytterbium concentration. 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It has been found that the electrical conductivity has a semiconducting character, and the thermopower changes its sign from positive to negative as the substitution concentration in [Yb.sub.x][Mn.sub.1-x]S increases. It has been established that the activation energy decreases with increasing ytterbium concentration. 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It has been found that the electrical conductivity has a semiconducting character, and the thermopower changes its sign from positive to negative as the substitution concentration in [Yb.sub.x][Mn.sub.1-x]S increases. It has been established that the activation energy decreases with increasing ytterbium concentration. The model of impurity donor 4f states satisfactorily agrees with the data on the electrical resistivity and the thermopower.</abstract><pub>Springer</pub><doi>10.1134/S1063783415050029</doi><tpages>5</tpages></addata></record> |
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subjects | Activation energy Electric properties Electrical conductivity Investigations Magnetic properties Rare earth metals Solid solutions |
title | Investigation of the transport properties of cation-substituted solid solutions [Yb.sub.x][Mn.sub.1-x]S |
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