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Effect of Fe substitution on the electronic structure, magnetic and thermoelectric properties of Co2FeSi full Heusler alloy: A first principle study

机译:Fe替代对Co2FeSi全Heusler合金电子结构,磁和热电性能的影响:第一个原理研究

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A large number of Heusler compounds have been discovered and their properties have been investigated both theoretically and experimentally. Among all the discovered Heusler compounds, Co2FeSi is focused for spintronic applications due to its high magnetic moment and high Curie temperature. In this aspect, the electronic structure, magnetic and thermoelectric properties of full Heusler alloy Co2-xFe1+xSi (x = 0-1) have been investigated by using first principle, Full Potential Linear Augmented Plane Wave method. The density of states calculation shows half-metallicity at x = 0 and 0.25 (i.e. Co2FeSi and Co1.75Fe1.25Si). The calculated magnetic moments were compared with experimental values measured at 4 K and also with the magnetic moments calculated by Slater-Pauling rule. The thermoelectric properties of Co2FeSi and Fe2CoSi were also calculated over a wide range of temperatures and it was found that Fe2CoSi shows higher figure of merit than Co2FeSi. (C) 2015 Elsevier B.V. All rights reserved.
机译:已发现大量的Heusler化合物,并且已在理论和实验上研究了它们的性质。在所有发现的Heusler化合物中,Co2FeSi的高磁矩和高居里温度使其成为自旋电子应用的重点。在这一方面,已经通过使用第一原理,全势线性增强平面波方法研究了整个Heusler合金Co2-xFe1 + xSi(x = 0-1)的电子结构,磁和热电性能。状态密度的计算显示出x = 0和0.25时的半金属性(即Co2FeSi和Co1.75Fe1.25Si)。将计算出的磁矩与在4 K下测得的实验值以及通过Slater-Pauling规则计算出的磁矩进行比较。还在宽温度范围内计算了Co2FeSi和Fe2CoSi的热电性能,发现Fe2CoSi的品质因数比Co2FeSi高。 (C)2015 Elsevier B.V.保留所有权利。

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