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磷酸盐矿物水磷铝钾石KAl2(OH,F)(PO4)2⋅4(H2O)的振动光谱研究及与磷铝钠石的对比

A vibrational spectroscopic study of the phosphate mineral minyulite KAl2(OH,F)(PO4)2⋅4(H2O) and in comparison with wardite.

作者信息

Frost Ray L, López Andrés, Xi Yunfei, Cardoso Luiz Henrique, Scholz Ricardo

机构信息

School of Chemistry, Physics and Mechanical Engineering, Science and Engineering Faculty, Queensland University of Technology, GPO Box 2434, Brisbane, Queensland 4001, Australia.

School of Chemistry, Physics and Mechanical Engineering, Science and Engineering Faculty, Queensland University of Technology, GPO Box 2434, Brisbane, Queensland 4001, Australia.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2014 Apr 24;124:34-9. doi: 10.1016/j.saa.2013.12.039. Epub 2014 Jan 9.

Abstract

Vibrational spectroscopy enables subtle details of the molecular structure of minyulite KAl2(OH,F)(PO4)2⋅4(H2O). Single crystals of a pure phase from a Brazilian pegmatite were used. Minyulite belongs to the orthorhombic crystal system. This indicates that it has three axes of unequal length, yet all are perpendicular to each other. The infrared and Raman spectroscopy were applied to compare the structure of minyulite with wardite. The reason for the comparison is that both are Al containing phosphate minerals. The Raman spectrum of minyulite shows an intense band at 1012 cm(-1) assigned to the ν1PO4(3-) symmetric stretching vibrations. A series of low intensity Raman bands at 1047, 1077, 1091 and 1105 cm(-1) are assigned to the ν3PO4(3-) antisymmetric stretching modes. The Raman bands at 1136, 1155, 1176 and 1190 cm(-1) are assigned to AlOH deformation modes. The infrared band at 1014 cm(-1) is ascribed to the PO4(3-) ν1 symmetric stretching vibrational mode. The infrared bands at 1049, 1071, 1091 and 1123 cm(-1) are attributed to the PO4(3-) ν3 antisymmetric stretching vibrations. The infrared bands at 1123, 1146 and 1157 cm(-1) are attributed to AlOH deformation modes. Raman bands at 575, 592, 606 and 628 cm(-1) are assigned to the ν4 out of plane bending modes of the PO4(3-) unit. In the 2600-3800 cm(-1) spectral range, Raman bands for minyulite are found at 3661, 3669 and 3692 cm(-1) are assigned to AlOH/AlF stretching vibrations. Broad infrared bands are also found at 2904, 3105, 3307, 3453 and 3523 cm(-1). Raman bands at 3225, 3324 cm(-1) are assigned to water stretching vibrations. A comparison is made with the vibrational spectra of wardite. Raman spectroscopy complimented with infrared spectroscopy has enabled aspects of the structure of minyulite to be ascertained and compared with that of other phosphate minerals.

摘要

振动光谱能够揭示羟磷铝石KAl2(OH,F)(PO4)2⋅4(H2O)分子结构的细微细节。研究使用了来自巴西伟晶岩的纯相单晶。羟磷铝石属于正交晶系。这表明它有三条不等长的轴,但彼此相互垂直。应用红外光谱和拉曼光谱来比较羟磷铝石与磷铝石的结构。进行比较的原因是二者都是含铝的磷酸盐矿物。羟磷铝石的拉曼光谱在1012 cm(-1)处显示出一个强峰,归属于ν1PO4(3-)对称伸缩振动。在1047、1077、1091和1105 cm(-1)处的一系列低强度拉曼峰归属于ν3PO4(3-)反对称伸缩模式。在1136、1155、1176和1190 cm(-1)处的拉曼峰归属于AlOH变形模式。在1014 cm(-1)处的红外峰归因于PO4(3-) ν1对称伸缩振动模式。在1049、1071、1091和1123 cm(-1)处的红外峰归因于PO4(3-) ν3反对称伸缩振动。在1123、1146和1157 cm(-1)处的红外峰归因于AlOH变形模式。在575、592、606和628 cm(-1)处的拉曼峰归属于PO4(3-)单元的ν4面外弯曲模式。在2600 - 3800 cm(-1)光谱范围内,羟磷铝石的拉曼峰出现在3661、3669和3692 cm(-1)处,归属于AlOH/AlF伸缩振动。在2904、3105、3307、3453和3523 cm(-1)处也发现了宽红外峰。在3225、3324 cm(-1)处的拉曼峰归属于水的伸缩振动。与磷铝石的振动光谱进行了比较。拉曼光谱与红外光谱相辅相成,使得能够确定羟磷铝石的结构方面,并与其他磷酸盐矿物的结构进行比较。

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