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Magnetic and thermoelectric properties of layered LixNayCoO2

机译:层状LixNayCoO2的磁和热电性质

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The magnetic, thermoelectric, and structural properties of LixNayCoO2, prepared by intercalation and deintercalation chemistry from the thermodynamically stable phase Li0.41Na0.31CoO2, which has an alternating Li/Na sequence along the c-axis, are reported. For the high Li-Na content phases Li0.41Na0.31CoO2 and Li0.40Na0.43CoO2, a sudden increase in susceptibility is seen below 50 K, whereas for Li0.21Na0.14CoO2 an antiferromagnetic-like transition is seen at 10 K, in spite of a change from dominantly antiferromagnetic to dominantly ferromagnetic interactions with decreasing alkali content. The Curie constant decreases linearly with decreasing alkali content, at the same time the temperature-independent contribution to the susceptibility increases, indicating that as the Co becomes more oxidized the electronic states become more delocalized. Consistent with this observation, the low alkali containing phases have metallic-like resistivities. The 300 K thermopowers fall between 30 μV/K (x+y=0.31) and 150 μV/K (x+y=0.83).
机译:报道了通过热力学稳定的相Li0.41Na0.31CoO2的嵌入和脱嵌化学制备的LixNayCoO2的磁性,热电和结构性质,该相沿c轴具有交替的Li / Na序列。对于高Li-Na含量的相Li0.41Na0.31CoO2和Li0.40Na0.43CoO2,在50 K以下时磁化率突然升高,而对于Li0.21Na0.14CoO2,在10 K时则出现类似反铁磁的转变。尽管随着碱含量的降低从主要反铁磁相互作用变为主要铁磁相互作用。居里常数随着碱含量的降低而线性降低,与此同时,对温度的敏感性的增加与温度无关,这表明随着Co的氧化程度越来越大,电子态也变得离域化。与该观察结果一致,低碱含量相具有类似金属的电阻率。 300 K热功率介于30μV/ K(x + y = 0.31)和150μV/ K(x + y = 0.83)之间。

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