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首页> 外文期刊>Mineralogical Magazine >Investigations of the Fe sulfosalts berthierite, garavellite, arsenopyrite and gudmundite by Raman spectroscopy
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Investigations of the Fe sulfosalts berthierite, garavellite, arsenopyrite and gudmundite by Raman spectroscopy

机译:用拉曼光谱法研究铁磺盐类水铁矿,针铁矿,毒砂和菱铁矿

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Arsenopyrite (FeAsS), gudmundite (FeSbS) and the rarer Fe sulfosalts berthierite (FeSb2S4) and garavellite (FeSbBiS4), were investigated by Raman spectroscopy. Whereas (Sb, Bi)S-3 pyramids are responsible for the Raman spectra of berthierite and garavellite, the spectra of gudmundite and arsenopyrite arise from the stretching and bending modes of (Sb, As)S units. Internal vibrations for berthierite and garavellite occur between 400 and 50 cm(-1), and those of the gudmundite and arsenopyrite between 500 and 100 cm(-1). The longer bond distances of the SbS3 groups readily explain the lower frequencies for berthierite in comparison with garavellite. Similarly, the greater mass and the longer bond distances of the Sb-S units also explain the lower frequencies observed for gudmundite relative to arsenopyrite.
机译:用拉曼光谱法研究了毒砂(FeAsS),菱铁矿(FeSbS)以及稀有的铁硫酸盐水铁矿(FeSb2S4)和微晶石(FeSbBiS4)。而(Sb,Bi)S-3金字塔是钙铁矿和Garavellite的拉曼光谱的组成部分,而(Sb,As)S单元的拉伸和弯曲模式则产生了菱铁矿和毒砂的光谱。黄铁矿和榴辉岩的内部振动发生在400至50 cm(-1)之间,而硅藻土和毒砂的内部振动发生在500至100 cm(-1)之间。 SbS3基团的较长键距很容易解释了钙榴石与石榴石的频率较低。同样,Sb-S单元的质量较大且键距较长,这也解释了相对于毒砂而言,硅藻土观察到的频率较低。

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