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Raman and infrared spectroscopic characterization of the arsenate-bearing mineral tangdanite– and in comparison with the discredited mineral clinotyrolite

机译:含砷矿物唐丹石的拉曼光谱和红外光谱表征-并与信誉良好的矿物斜铁钛矿相比较

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摘要

The minerals clinotyrolite and fuxiaotuite are discredited in terms of the mineral tangdanite. The mixed anion mineral tangdanite Ca2Cu9(AsO4)4(SO4)0.5(OH)9 9H2O has been studied using a combination of Raman and infrared spectroscopy. Characteristic bands associated with arsenate, sulphate and hydroxyl units are identified. Broad bands in the OH stretching region are observed and are resolved into component bands. These bands are assigned to water and hydroxyl stretching vibrations. Two intense Raman bands at 837 and approximately 734 cm−1 are assigned to the ν1 (AsO4)3− symmetric stretching and ν3 (AsO4)3− antisymmetric stretching modes. Infrared bands at 1023 cm−1 are assigned to the (SO4)2− ν1 symmetric stretching mode, and infrared bands at 1052, 1110 and 1132 cm−1 assigned to (SO4)2− ν3 antisymmetric stretching modes, confirming the presence of the sulphate anion in the tangdanite structure. Raman bands at 593 and 628 cm−1 are attributed to the (SO4)2− ν4 bending modes. Low-intensity Raman bands found at 457 and 472 cm−1 are assigned to the (AsO4)3− ν2 bending modes. A comparison is made with the previously obtained spectral data on the discredited mineral clinotyrolite.
机译:斜铁钛矿和伏小土矿的矿物在唐丹石方面是不可信的。结合拉曼光谱和红外光谱研究了混合阴离子矿物唐丹石Ca2Cu9(AsO4)4(SO4)0.5(OH)9 9H2O。确定了与砷酸盐,硫酸盐和羟基单元相关的特征带。观察到OH拉伸区域中的宽带,并将其分解为组分带。这些频带被分配给水和羟基拉伸振动。将两个在837和大约734cm-1处的强拉曼光谱带分配给ν1(AsO4)3-对称拉伸和ν3(AsO4)3-反对称拉伸模式。将1023 cm-1处的红外波段指定为(SO4)2-ν1对称拉伸模式,将1052、1110和1132 cm-1处的红外波段指定为(SO4)2-v3对称拉伸模式,从而确认存在坦格石结构中的硫酸根阴离子。 593和628?cm-1处的拉曼谱带归因于(SO4)2−ν4弯曲模式。将在457和472cm-1处发现的低强度拉曼带分配给(AsO4)3-v2弯曲模式。与先前获得的不合格矿物斜发硅铁石的光谱数据进行比较。

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