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Raman and infrared spectroscopic characterization of beryllonite, a sodium and beryllium phosphate mineral : implications for mineral collectors

机译:钠和铍磷酸盐矿物铍青石的拉曼光谱和红外光谱表征:对矿物收集剂的影响

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摘要

The mineral beryllonite has been characterized by the combination of Raman spectroscopy and infrared spectroscopy. SEM–EDX was used for the chemical analysis of the mineral. The intense sharp Raman band at 1011 cm-1, was assigned to the phosphate symmetric stretching mode. Raman bands at 1046, 1053, 1068 and the low intensity bands at 1147, 1160 and 1175 cm-1 are attributed to the phosphate antisymmetric stretching vibrations. The number of bands in the antisymmetric stretching region supports the concept of symmetry reduction of the phosphate anion in the beryllonite structure. This concept is supported by the number of bands found in the out-of-plane bending region. Multiple bands are also found in the in-plane bending region with Raman bands at 399, 418, 431 and 466 cm-1. Strong Raman bands at 304 and 354 cm-1 are attributed to metal oxygen vibrations. Vibrational spectroscopy served to determine the molecular structure of the mineral. The pegmatitic phosphate minerals such as beryllonite are more readily studied by Raman spectroscopy than infrared spectroscopy.
机译:铍青石矿物的特征在于结合了拉曼光谱和红外光谱。 SEM-EDX用于矿物的化学分析。在1011 cm-1处的强烈尖锐拉曼带被指定为磷酸盐对称拉伸模式。 1046、1053、1068处的拉曼谱带和1147、1160和1175 cm-1处的低强度谱带归因于磷酸盐抗对称拉伸振动。反对称拉伸区域中的条带数目支持铍青石结构中磷酸根阴离子对称还原的概念。在平面外弯曲区域中找到的条带数量支持了这一概念。在面内弯曲区域中也发现了多个带,其中拉曼带位于399、418、431和466 cm-1。 304和354 cm-1处的强拉曼谱带归因于金属氧振动。振动光谱法用于确定矿物的分子结构。拉曼光谱法比红外光谱法更容易研究象贝镁石这样的聚磷酸盐磷酸盐矿物。

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