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The molecular structure of the phosphate mineral turquoise – A Raman spectroscopic study

机译:磷酸盐矿物绿松石的分子结构–拉曼光谱研究

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摘要

Three turquoise minerals of different origins with formula CuAl6(PO4)4(OH)8.4H2O have been studied by Raman spectroscopy at 298 and 77 K and by infrared spectroscopy. A comparison of the turquoise spectra is made with the spectra of chalcosiderite. The spectra of the three mineral samples are very similar in the 1200 to 900 cm-1 region but strong differences are observed in the 900 to 100 cm-1 region. udThe effect of substitution of Fe for Al in chalcosiderite shifts the bands to lower wavenumbers. Factor group analysis (FGA) implies four OH stretching vibrations for both the water and hydroxyl units. Two bands ascribed to water are observed at 3276 and 3072 cm-1 at 298 K which becomes four bands at 77 K. Three hydroxyl stretching vibrations are observed in the 298 K spectrum and four in the 77 K spectrum. Calculations using a Libowitzky type formula show that the hydrogen bond distances of the water molecules are 2.735 and 2.665 Å which are considerably shorter than the values for the hydroxyl units 2.909, 2.853 and 2.840 Å. Two phosphate stretching vibrations at 1066 and 1042 cm-1 in line with the two independent phosphate units in the structure of turquoise. Three bands are observed at 1184, 1161 and 1106 cm-1 assigned to the phosphate antisymmetric stretching vibrations. FGA predicts six bands but only 3 are observed due to accidental degeneracy. Both the ν2 and ν4 bending regions are complex with increased complexity observed in the 77 K spectra.
机译:通过298和77 K的拉曼光谱和红外光谱研究了三种不同来源的分子式为CuAl6(PO4)4(OH)8.4H2O的绿松石矿物。绿松石光谱与黄铜矿的光谱进行了比较。三种矿物样品的光谱在1200至900 cm-1区域非常相似,但在900至100 cm-1区域观察到很强的差异。 “ ”到 d , d d 的 's 因子组分析(FGA)暗示了水和羟基单元均发生四个OH拉伸振动。在298 K在3276和3072 cm-1处观察到两个归因于水的谱带,在77 K时变为四个谱带。在298 K谱图中观察到三个羟基拉伸振动,在77 K谱图中观察到四个羟基拉伸振动。使用Libowitzky型公式进行的计算表明,水分子的氢键距离为2.735和2.665Å,大大短于羟基单元2.909、2.853和2.840的值。两种磷酸盐在1066和1042 cm-1处的拉伸振动与绿松石结构中的两个独立的磷酸盐单元一致。在1184、1161和1106 cm-1处观察到三个带,分别对应于磷酸盐抗对称拉伸振动。 FGA预测有六个频段,但由于偶然的退化而仅观察到三个。 ν2和ν4弯曲区域都很复杂,在77 K光谱中观察到的复杂性增加。

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