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Spectroscopic characterization of chromite from the Moa-Baracoa Ophiolitic Massif, Cuba

机译:古巴Moa-Baracoa蛇绿岩地块中亚铬铁矿的光谱表征

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摘要

The Cuban chromites with a spinel structure, FeCr 2O4 have been studied using optical absorption and EPR spectroscopy. The spectral features in the electronic udspectra are used to map the octahedral and tetrahedral co-ordinated cations. Bands due Cr3+ and Fe3+ ions could be distinguished from UV-VIS spectrum. Chromite spectrum shows two spin allowed bands at 17390 and 23810 cm-1 due to Cr3+ in octahedral field and they are assigned to 4A2g( F) ─> 4T2g(F) and 4A2g( F) ─> 4T1g(F) transitions. This is in conformity with the broad resonance of Cr3+ observed from EPR Spectrum at g = 1.903 and a weak signal at g = 3.861 confirms Fe3+ impurity in the mineral. Bands of Fe3+ ion in the optical spectrum at 13700, 18870 and 28570 cm-1 are attributed to 6A1g(S) ─> 4T1g(G), 6A1g(S) ─> 4T2g(G) and 6A1g(S) ─> 4T2g(P) transitions respectively. Near-IR reflectance spectroscopy has been used effectively to show intense absorption bands caused by electronic spin-allowed dd transitions of Fe2+ in tetrahedral symmetry, in the region 5000-4000 cm-1. The high frequency region (7500-6500 cm-1) is attributed to the overtones of hydroxyl stretching modes. Correlation between Raman spectral features and mineral chemistry are used to interpret the Raman data. The Raman spectrum of chromite shows three bands in the CrO stretching region at 730, 560 and 445 cm-1. The most intense peak at 730 cm-1 is identified as symmetric stretching vibrational mode, A1g(?1) and the other two minor peaks at 560 and 445 cm-1 are assigned to F2g (?4) and Eg (?2) modes respectively. Cation substitution in chromite results various changes both in Raman and IR spectra. In the low-wavenumber region of Raman spectrum a significant band at 250 cm-1with uda component at 218 cm-1 is attributed F2g (?3) mode. The minor peaks at 195, 175, 160 cm-1 might be due to Eg and F2g symmetries. Broadening of the peak of A1g mode and shifting of the peak to higher wavenumber observed as a result of increasing the proportion of Al3+O6. The presence of water in the mineral shows bands in the IR spectrum at 3550, 3425, 3295, 1630 and 1455 cm-1. The vibrational spectrum of chromite gives raise to four frequencies at 985, 770, 710 and 650 cm-1. The first tow frequencies ?1 and ?2 are related to the lattice vibrations of octahedral groups. Due to the influence of tetrahedral bivalent cation, vibrational interactions occur between ?3 and ?4 and hence the low frequency bands, ?3 and ?4 correspond to complex vibrations involving both octahedral and tetrahedral cations simultaneously. Cr3+ in Cuban natural chromites has highest CFSE (20868cm-1) when compared to other oxide minerals.
机译:使用光吸收和EPR光谱研究了具有尖晶石结构的古巴亚铬铁矿FeCr 2O4。电子光谱中的光谱特征用于绘制八面体和四面体配位阳离子。 Cr3 +和Fe3 +离子带可与UV-VIS光谱区分开。亚铬酸盐光谱显示由于八面体场中的Cr3 +而在17390和23810 cm-1处有两个自旋允许带,它们被指定为4A2g(F)─> 4T2g(F)和4A2g(F)─> 4T1g(F)跃迁。这与从EPR光谱在g = 1.903处观察到的Cr3 +的宽共振相符,并且在g = 3.861处的微弱信号证实了矿物中的Fe3 +杂质。 Fe3 +离子在13700、18870和28570 cm-1处的光谱带归因于6A1g(S)─> 4T1g(G),6A1g(S)─> 4T2g(G)和6A1g(S)─> 4T2g( P)分别过渡。近红外反射光谱已被有效地用于显示在四面体对称的5000-4000 cm-1范围内由Fe2 +的电子自旋允许dd跃迁引起的强烈吸收带。高频区域(7500-6500 cm-1)归因于羟基拉伸模式的泛音。拉曼光谱特征与矿物化学之间的相关性用于解释拉曼数据。亚铬酸盐的拉曼光谱在CrO拉伸区域的730、560和445 cm-1处显示三个带。在730 cm-1处最强的峰被确定为对称拉伸振动模式,A1g(?1),而在560和445 cm-1处的其他两个次要峰被指定为F2g(?4)和Eg(?2)模式分别。亚铬酸盐中的阳离子取代导致拉曼光谱和红外光谱发生各种变化。在拉曼光谱的低波数区域中,在250 cm-1处有一个显着的谱带,在218 cm-1处有一个 uda分量被归为F2g(?3)模式。 195、175、160 cm-1处的次要峰可能是由于Eg和F2g的对称性造成的。由于增加了Al3 + O6的比例,观察到A1g模式的峰变宽,并且峰移至更高的波数。矿物中水的存在在3550、3425、3295、1630和1455 cm-1处显示了红外光谱带。亚铬酸盐的振动光谱在985、770、710和650 cm-1处产生四个频率。第一拖曳频率ω1和ω2与八面体群的晶格振动有关。由于四面体二价阳离子的影响,在λ3和λ4之间发生振动相互作用,因此,低频带,λ3和λ4对应于同时涉及八面体和四面体阳离子的复杂振动。与其他氧化物矿物相比,古巴天然铬铁矿中的Cr3 +具有最高的CFSE(20868cm-1)。

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