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Thermoelectric materials taking advantage of spin entropy: lessons from chalcogenides and oxides

机译:热电材料利用旋转熵:来自硫属化物和氧化物的课程

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摘要

The interplay between charges and spins may influence the dynamics of the carriers and determine their thermoelectric properties. In that respect, magneto-thermoelectric power MTEP, i.e. the measurements of the Seebeck coefficient S under the application of an external magnetic field, is a powerful technique to reveal the role of magnetic moments on S. This is illustrated by different transition metal chalcogenides: CuCrTiS4 and CuMnTiS4 magnetic thiospinels, which are compared with magnetic oxides, Curie-Weiss (CW) paramagnetic misfit cobaltites, ruthenates, either ferromagnetic perovskite or Pauli paramagnet quadruple perovskites, and CuGa1-xMnxTe2 chalcopyrite telluride and Bi1.99Cr0.01Te3 in which diluted magnetism is induced by 3%-Mn and 1%-Cr substitution, respectively. In the case of a ferromagnet (below TC) and CW paramagnetic materials, the increase of magnetization at low T when a magnetic field is applied is accompanied by a decrease of the entropy of the carriers and hence S decreases. This is consistent with the lack of MTEP in the Pauli paramagnetic quadruple perovskites. Also, no significant MTEP is observed in CuGa1-xMnxTe2 and Bi1.99Cr0.01Te3, for which Kondo-type interaction between magnetic moments and carriers prevails. In contrast, spin glass CuCrTiS4 exhibits negative MTEP like in ferromagnetic ruthenates and paramagnetic misfit cobaltites. This investigation of some chalcogenides and oxides provides key ingredients to select magnetic materials for which S benefits from spin entropy.
机译:电荷和旋转之间的相互作用可能影响载波的动态并确定其热电性质。在这方面,磁热电功率MTEP,即塞贝克系数S在外部磁场的应用下的测量,是揭示磁矩对S的作用的强大技术。这是由不同的过渡金属硫属化合物说明的: CUCRTIS4和CumnTIS4磁性硫椎素,其与磁氧化物,CURIE-WEISS(CW)顺磁性粘性钴钴,钌酸盐,铁氧化物钙钛矿或Pauli Paramagnet四肢蛋白质,以及Cuga1-Xmnxte2 Chalcopyrite碲化物和Bi1.99cr0.01te3,其中稀释磁化分别诱导3%-mn和1%-cr替代。在铁磁性(下方TC)和CW顺磁性材料的情况下,施加磁场时,施加磁场的低T处的磁化的增加伴随着载体熵的减小,因此S降低。这与Pauli Paramagnetic四重植物缺乏缺乏MTEP一致。此外,在Cuga1-xMnxte2和Bi1.99cr0.01te3中没有观察到显着的MTEP,其中磁矩与载体之间的Kondo型相互作用普遍存在。相比之下,旋转玻璃Cucrtis4在铁磁性钌和顺磁性磁性钴沸石中表现出阴性MTEP。这种对一些硫属元素化物和氧化物的研究提供了关键成分,以选择来自旋转熵的磁性材料的磁性材料。

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