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11 - 400 K温度范围内SmFe(BO)的晶体结构、绝对构型和特征温度

Crystal structure, absolute configuration and characteristic temperatures of SmFe(BO) in the temperature range 11-400 K.

作者信息

Smirnova Ekaterina S, Alekseeva Olga A, Dudka Alexander P, Sorokin Timofei A, Khmelenin Dmitry N, Yapaskurt Vasily O, Lyubutina Marianna V, Frolov Kirill V, Lyubutin Igor S, Gudim Irina A

机构信息

Shubnikov Institute of Crystallography of Federal Scientific Research Centre 'Crystallography and Photonics', Russian Academy of Sciences, Moscow 119333, Russian Federation.

Moscow State University, Faculty of Geology, Moscow 119991, Russian Federation.

出版信息

Acta Crystallogr B Struct Sci Cryst Eng Mater. 2022 Jun 1;78(Pt 3 Pt 2):546-556. doi: 10.1107/S2052520622003948. Epub 2022 May 21.

Abstract

The crystal structure of samarium iron borate was analyzed with regard to growth conditions and temperature. The inclusion of about 7% Bi atoms in the crystals grown using the BiMoO-based flux was discovered and there were no impurities in the crystals grown using the LiWO-based flux. No pronounced structural features associated with Bi inclusion were observed. The different absolute configurations of the samples grown using both fluxes were demonstrated. Below 80 K, a negative thermal expansion of the c unit-cell parameter was found. The structure of (SmBi)Fe(BO) belongs to the trigonal space group R32 in the temperature range 90-400 K. A decrease in the (Sm,Bi)-O, Sm-B, Sm-Fe, Fe-O, Fe-B and Fe-Fe distances is observed with a lowering of the temperature, B1-O does not change, B2-O increases slightly and the B2O triangles deviate from the ab plane. The strongest decrease in the equivalent isotropic atomic displacement parameters (U) with decreasing temperature is observed for atoms Sm and O2, and the weakest is observed for B1. The O2 atoms have the highest U values, the most elongated atomic displacement ellipsoids of all the atoms and the smallest number of allowed vibrational modes of all the O atoms. The largest number of allowed vibrational modes and the strongest interactions with neighbouring atoms is seen for the B atoms, and the opposite is seen for the Sm atoms. The quadrupole splitting Δ(T) of the paramagnetic Mössbauer spectra increases linearly with cooling. The Néel temperature [T = 31.93 (5) K] was determined from the temperature dependence of the hyperfine magnetic field B(T), which has a non-Brillouin character. The easy-plane long-range magnetic ordering below T was confirmed.

摘要

针对生长条件和温度对硼酸钐铁的晶体结构进行了分析。发现在使用钼酸铋基助熔剂生长的晶体中包含约7%的铋原子,而使用钨酸锂基助熔剂生长的晶体中没有杂质。未观察到与铋掺杂相关的明显结构特征。证明了使用两种助熔剂生长的样品具有不同的绝对构型。在80 K以下,发现c晶胞参数存在负热膨胀。(SmBi)Fe(BO)的结构在90 - 400 K温度范围内属于三方空间群R32。随着温度降低,观察到(Sm,Bi)-O、Sm-B、Sm-Fe、Fe-O、Fe-B和Fe-Fe距离减小,B1-O不变,B2-O略有增加且B2O三角形偏离ab平面。随着温度降低,等效各向同性原子位移参数(U)下降最显著的是Sm和O2原子,下降最微弱的是B1原子。O2原子具有最高的U值、所有原子中最细长的原子位移椭球以及所有O原子中最少的允许振动模式数量。B原子具有最多的允许振动模式数量以及与相邻原子最强的相互作用,而Sm原子则相反。顺磁穆斯堡尔谱的四极分裂Δ(T)随冷却呈线性增加。从具有非布里渊特性的超精细磁场B(T)的温度依赖性确定了奈尔温度[T = 31.93 (5) K]。证实了在T以下存在易平面长程磁有序。

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