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Synthesis and Study of Fe-Doped Bi2S3 Semimagnetic Nanocrystals Embedded in a Glass Matrix

机译:嵌入玻璃基质中的铁掺杂Bi 2 S 3半磁性纳米晶体的合成与研究

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摘要

Iron-doped bismuth sulphide (Bi2−xFexS3) nanocrystals have been successfully synthesized in a glass matrix using the fusion method. Transmission electron microscopy images and energy dispersive spectroscopy data clearly show that nanocrystals are formed with an average diameter of 7–9 nm, depending on the thermic treatment time, and contain Fe in their chemical composition. Magnetic force microscopy measurements show magnetic phase contrast patterns, providing further evidence of Fe incorporation in the nanocrystal structure. The electron paramagnetic resonance spectra displayed Fe3+ typical characteristics, with spin of 5/2 in the 3d5 electronic state, thereby confirming the expected trivalent state of Fe ions in the Bi2S3 host structure. Results from the spin polarized density functional theory simulations, for the bulk Fe-doped Bi2S3 counterpart, corroborate the experimental fact that the volume of the unit cell decreases with Fe substitutionally doping at Bi1 and Bi2 sites. The Bader charge analysis indicated a pseudo valency charge of 1.322|e| on FeBi1 and 1.306|e| on FeBi2 ions, and a spin contribution for the magnetic moment of 5.0 µB per unit cell containing one Fe atom. Electronic band structures showed that the (indirect) band gap changes from 1.17 eV for Bi2S3 bulk to 0.71 eV (0.74 eV) for Bi2S3:FeBi1 (Bi2S3:FeBi2). These results are compatible with the 3d5 high-spin state of Fe3+, and are in agreement with the experimental results, within the density functional theory accuracy.
机译:使用熔融法已经成功地在玻璃基质中合成了铁掺杂的硫化铋(Bi2-xFexS3)纳米晶体。透射电子显微镜图像和能量色散谱数据清楚地表明,根据热疗时间的不同,形成的纳米晶体的平均直径为7–9 nm,并且其化学成分中含有Fe。磁力显微镜测量显示出磁性相衬图案,为铁掺入纳米晶体结构提供了进一步的证据。电子顺磁共振谱显示出Fe 3 + 的典型特征,在3d 5 电子态下自旋为5/2,从而确认了Fe离子在三价态下的预期三价态。 Bi2S3主机结构。自旋极化密度泛函理论模拟的结果表明,对于大量的Fe掺杂的Bi2S3对应物,证实了实验事实,即在Bi1和Bi2位上,Fe取代掺杂会导致晶胞体积减小。 Bader电荷分析表明伪价电荷为1.322 | e |。在FeBi1和1.306 | e |上FeBi2离子的电导率和每一个含一个Fe原子的晶胞对5.0μB磁矩的自旋贡献。电子能带结构显示(间接)带隙从Bi2S3本体的1.17 eV变为Bi2S3:Fe Bi1 (Bi 2 S 3 :Fe Bi2 )。这些结果与Fe 3 + 的3d 5 高自旋态兼容,并且在密度泛函理论精度范围内与实验结果吻合。

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