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钴取代的GdSiGe中短程铁磁相互作用和磁热效应的观察

Observation of short range ferromagnetic interactions and magnetocaloric effect in cobalt substituted GdSiGe.

作者信息

Uthaman Bhagya, Manju P, Thomas Senoy, Jaiswal Nagar Deepshikha, Suresh K G, Varma Manoj Raama

机构信息

Materials Science and Technology Division, CSIR-National Institute for Interdisciplinary Science and Technology, Thiruvananthapuram-695 019, India.

出版信息

Phys Chem Chem Phys. 2017 May 17;19(19):12282-12295. doi: 10.1039/c7cp00849j.

DOI:10.1039/c7cp00849j
PMID:28451661
Abstract

We report on the observation of double transition - a first order and a second order transition in GdSiCoGe with x = 0, 0.1, 0.2 and 0.4 with the appearance of short-range ferromagnetic correlations. The first order phase transition is due to a combined magnetostructural transition from monoclinic paramagnetic phase to orthorhombic ferromagnetic phase on cooling while the second order transition arises from an orthorhombic paramagnetic to ferromagnetic phase on cooling. Structural studies show that the substituted compounds crystallize in a combination of GdSiGe and GdSi phases. Low-temperature X-ray diffraction measurements confirm the complete transformation from monoclinic to orthorhombic phase. DC magnetization measurements reveal an anomalous low field magnetic behaviour indicating a Griffiths-like phase. This unusual behaviour is attributed to the local disorder within the crystallographic structure indicating the presence of short-range magnetic correlations and ferromagnetic clustering, which is stabilized and enhanced by competing intra-layer and inter-layer magnetic interactions. The magnetostructural transition results in entropy changes (-ΔS) of 9 J kg K at 260 K for x = 0.1, 8.5 J kg K at 245 K for x = 0.2 and 4.2 J kg K at 210 K for x = 0.4 for a field change of 50 kOe. Co substitution induces compelling crystallographic and magnetoresponsive effects in the Gd-Si-Ge system, which could be useful for potential and smart applications such as solid-state magnetic refrigeration and sensitive magnetic switching from paramagnetic to ferromagnetic state. Universal curve analysis has been carried out on the substituted samples to study the order of the magnetic transition.

摘要

我们报告了在x = 0、0.1、0.2和0.4的GdSiCoGe中观察到的双重转变——一级转变和二级转变,同时出现了短程铁磁相关性。一级相变是由于在冷却时从单斜顺磁相到正交铁磁相的磁结构联合转变,而二级转变是由于在冷却时从正交顺磁相到铁磁相的转变。结构研究表明,取代化合物以GdSiGe和GdSi相的组合形式结晶。低温X射线衍射测量证实了从单斜相到正交相的完全转变。直流磁化测量揭示了异常的低场磁行为,表明存在类格里菲斯相。这种不寻常的行为归因于晶体结构内的局部无序,表明存在短程磁相关性和铁磁团簇,这通过层内和层间磁相互作用的竞争而得以稳定和增强。对于50 kOe的场变化,磁结构转变在260 K时导致x = 0.1的熵变(-ΔS)为9 J kg K,在245 K时x = 0.2的熵变为8.5 J kg K,在210 K时x = 0.4的熵变为4.2 J kg K。Co取代在Gd-Si-Ge系统中引起了引人注目的晶体学和磁响应效应,这对于诸如固态磁制冷和从顺磁态到铁磁态的灵敏磁开关等潜在和智能应用可能是有用的。已对取代样品进行了通用曲线分析,以研究磁转变的顺序。

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