Institut Néel, CNRS and Université Joseph Fourier, 25 avenue des Martyrs, BP 166, F-38042 Grenoble cedex 9, France.
J Phys Condens Matter. 2013 Feb 20;25(7):075703. doi: 10.1088/0953-8984/25/7/075703. Epub 2013 Jan 23.
The effect of selenium substitution by sulfur in the Tl(1-y)Fe(2-z)Se(2) antiferromagnet was studied by x-ray and electron diffraction, magnetization and transport measurements. Tl(0.8)Fe(1.5)(Se(1-x)S(x))(2) (nominal composition) solid solution was synthesized in the full x range (0 ≤ x(S) ≤ 1) using the sealed tube technique. No superconductivity was found down to 4.2 K in the series despite the fact that the optimal crystallographic parameters, determined by Rietveld refinements, are reached in the series (i.e. the Fe-(Se, S) interplane height and (Se, S)-Fe-(Se, S) angle for which the critical superconducting transition T(c) is usually maximal in pnictides). A quasi-full Tl site (y ~ 0.05) compared to significant alkaline deficiency (y = 0.2-0.3) in analogous A(1-y)Fe(2-z)Se(2) (A = K, Rb, Cs), and the resulting differences in iron valency, density of states and doping, are suggested as an explanation for this absence of superconductivity. Transmission electron microscopy confirmed the existence of an ordered iron vacancies network in the samples of the Tl(0.8)Fe(1.5)(Se(1-x)S(x))(2) series in the form of the tetragonal √5a × √5a × c superstructure (I4/m). The Néel temperature (T(N)) indicating the onset of antiferromagnetism order in this √5a × √5a × c supercell is found to decrease from 450 K in the selenide (x = 0) to 330 K in the sulfide (x = 1). Finally, we demonstrate a direct linear relationship between T(N) and the Fe-(Se, S) bond length (or Fe-(Se, S) height).
用 X 射线和电子衍射、磁化和输运测量研究了硒被硫取代在 Tl(1-y)Fe(2-z)Se(2)反铁磁体中的效应。使用密封管技术合成了 Tl(0.8)Fe(1.5)(Se(1-x)S(x))(2)(标称组成)的全 x 范围(0 ≤ x(S) ≤ 1)固溶体。尽管最佳晶体学参数(由 Rietveld 精修确定)在该系列中达到,通过 4.2 K 以下的系列没有发现超导性,即在磷化物中通常最大的 Fe-(Se, S) 层间高度和 (Se, S)-Fe-(Se, S) 角。与类似的 A(1-y)Fe(2-z)Se(2)(A = K、Rb、Cs)相比,准全 Tl 位(y ~ 0.05)和明显的碱缺失(y = 0.2-0.3)以及由此产生的铁价、态密度和掺杂差异被认为是缺乏超导性的原因。透射电子显微镜证实,在 Tl(0.8)Fe(1.5)(Se(1-x)S(x))(2)系列样品中存在有序的铁空位网络,其形式为四方 √5a × √5a × c 超晶格(I4/m)。反铁磁序开始的奈耳温度(T(N))在这个 √5a × √5a × c 超晶格中从硒化物(x = 0)的 450 K 降低到硫化物(x = 1)的 330 K。最后,我们证明了 T(N)与 Fe-(Se, S)键长(或 Fe-(Se, S)高度)之间存在直接的线性关系。