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Structural Origin of Optical Band Edge Shift in Se70Ge30-xBix (0≤x≤10) Glassy Alloys

机译:SE70GE30-XBIX(0≤x≤10)玻璃质合金中光条边缘移位的结构起源

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摘要

Bulk glasses of Se-Ge-Bi system have been prepared by quenching the melt. The XRD exhibits very weak peaks riding over halos. DSC scans show a single stage to a multistage crystallization with an incremental substitution of Ge by Bi, indicating evolution of structurally inhomogeneous phases at the molecular level with the increasing content of Bi. The Raman spectra (50-500 cm-1) reveal the formation of the corner and edge-sharing GeSe4/2terahedral and Bi2Se3 pyramidal units. Transmission electron microscope (TEM) Images depicts the formation of submicron to nano-sized spherical shaped struc- tural units in a chain-like configuration. Fragmentation of chains and refinement effect of Bi are noticed in TEM and SEM Images. The optical absorption edge found to be red-shifted along with a sharp decrease in optical band gap (1.74-0.82), with the increasing fraction of Bi in alloys. Attempts have been made to elucidate the results on the structural considerations (bond and band diagram) and Burstein-Moss effect.
机译:SE-GE-BI系统的散装玻璃是通过淬灭熔体来制备的。 XRD表现出非常弱的山峰,骑着光环。 DSC扫描显示了通过BI逐步取代GE的多阶段结晶的单个阶段,表明随着BI含量的增加,结构上的不均匀相位的结构不均匀相的演变。拉曼光谱(50-500 cm-1)揭示了角落和边缘共享的GESE4/2甲状腺和BI2SE3锥体单元的形成。透射电子显微镜(TEM)图像描绘了在链式构型中形成亚微米对纳米大小的球形结构单元的形成。在TEM和SEM图像中注意到了链条的碎裂和BI的精炼效应。在光条间隙(1.74-0.82)中,发现的光吸收边缘与急剧下降,并且合金中BI的分数增加。已经尝试在结构考虑(键和带图)和爆发素效应上阐明结果。

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