首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Unraveling the nature of Fe-doping mediated inter- and intra-chain interactions in Ca3Co2O6
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Unraveling the nature of Fe-doping mediated inter- and intra-chain interactions in Ca3Co2O6

机译:解开Fe-Doping介导的CA3CO2O6中介导的联链和链内相互作用的性质

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The structural and magnetic properties of quasi-one-dimensional (1D) spin-chain compounds Ca3Co2-xFexO6 (x = 0, 0.1, 0.2 and 0.3) synthesized by a sol-gel method have been systematically studied by means of X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), neutron powder diffraction (NPD), dc and ac magnetization measurements. The samples adopt a rhombohedral crystal structure with the space group R-3c in a temperature range of 5-100 K. Fe ions are found to locate at the trigonal prism Co2 crystallographic sites. Fe doping converts some of low-spin Co3+ ions at Co1 octahedral sites into Co2+ ions. For the high-temperature paramagnetic phase, the Curie paramagnetic temperature theta(p) changes its sign from positive to negative at x = 0.2, implying that the dominant magnetic interaction is driven from ferromagnetic (FM) to antiferromagnetic (AFM) upon Fe substitution. A partial low-spin to high-spin state crossover of the Co1 ions is observed at high Fe-doping level x = 0.3. All the samples exhibit a long-range spin-density wave (SDW) AFM ordering below T-N, followed by a spin-glass-like transition at T-f. These low-temperature magnetic phases were significantly suppressed upon Fe doping. The Fe substitution in Ca3Co2-xFexO6 weakened both intrachain and interchain magnetic interactions, caused by enhanced magnetic disorder due to the different magnetic characters of Ising Co and Heisenberg Fe spins. (C) 2020 Elsevier B.V. All rights reserved.
机译:采用x射线衍射(XRD)、x射线光电子能谱(XPS)、中子粉末衍射(NPD)、直流和交流磁化测量等手段,系统研究了溶胶-凝胶法合成的准一维(1D)自旋链化合物Ca3Co2-xFexO6(x=0、0.1、0.2和0.3)的结构和磁性。在5-100K的温度范围内,样品采用具有空间群R-3c的菱面体晶体结构。发现铁离子位于三棱柱Co2结晶位置。铁掺杂将Co1八面体位置的一些低自旋Co3+离子转化为Co2+离子。对于高温顺磁相,居里顺磁温度θ(p)在x=0.2时从正变为负,这意味着铁取代后主导磁相互作用由铁磁(FM)变为反铁磁(AFM)。在高铁掺杂水平x=0.3时,观察到Co1离子的部分低自旋到高自旋态交叉。所有样品在T-N以下呈现出长程自旋密度波(SDW)AFM有序,随后在T-f处出现自旋玻璃状转变。这些低温磁相在Fe掺杂后被显著抑制。Ca3Co2-xFexO6中的铁取代削弱了链内和链间的磁相互作用,这是由于伊辛钴和海森堡铁自旋的不同磁特性导致的磁无序增强所致。(C) 2020爱思唯尔B.V.版权所有。

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