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VIBRATIONAL ANALYSIS OF PALYGORSKITE AND SEPIOLITE

机译:凹凸棒石和海泡石的振动分析

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摘要

Lattice dynamic calculations for the sepiolite and palygorskite structures using polarized Raman and FTIR spectra provide a fundamental basis for interpreting spectral features by assigning vibrational modes. The Si-O stretch and O-Si-O bond bending force constants determined for palygorskite are similar to equivalent values calculated previously for other phyllosilicates. The Mg-O bond stretch values, on the other hand, are about half of those determined for the equivalent Al-O and Mg-O bond stretch environments in other phyllosilicates, suggesting that the bonding within the octahedral ribbons in palygorskite and sepiolite is weaker than that in the continuous octahedral sheets in micas. The weaker bonding allows more flexible octahedral environments in palygorskite and sepiolite, giving rise to higher probabilities for cation substitutions and vacancies relative to the micas. Above ~700 cm~(-1) in the IR and 750 cm~(-1) in the Raman spectra, the eigenmodes are dominated by atomic displacements within the silicate sheets. Below 700 cm~(-1) the eigenmodes become mixed with motions among the Mg octahedra and the silicate sheets; the eigenmodes assigned to the most prominent peaks in the Raman spectra (near 700 cm~(-1)) belong to this group. As mode frequencies decrease, the corresponding eigenmodes evolve from more localized Mg-O stretch, O-Mg-O bend and O-Si-O bend motions to longer-range motions such as silicate sheet deformations caused by silicate tetrahedra rotation and silicate sheet shearing around the Mg-octahedral sheets.
机译:利用极化拉曼光谱和FTIR光谱对海泡石和坡缕石结构进行晶格动力学计算,为通过分配振动模式解释光谱特征提供了基础。为坡缕石确定的Si-O拉伸和O-Si-O键弯曲力常数类似于先前为其他页硅酸盐计算的等效值。另一方面,Mg-O键拉伸值大约是在其他页硅酸盐中等效的Al-O和Mg-O键拉伸环境下确定的值的一半,这表明凹凸棒石和海泡石中八面体带的键合较弱比云母的连续八面体薄片中的要多。较弱的键合使得坡缕石和海泡石中的八面体环境更加灵活,相对于云母,阳离子取代和空位的可能性更高。红外光谱中〜700 cm〜(-1)以上,拉曼光谱中大于750 cm〜(-1)以上,本征模态主要受硅酸盐片内原子位移的影响。在700 cm〜(-1)以下,本征模与八面体Mg和硅酸盐片之间的运动混合在一起。属于拉曼光谱中最突出的峰(接近700 cm〜(-1))的本征模属于这一类。随着模频率的降低,相应的本征模从更局部的Mg-O拉伸,O-Mg-O弯曲和O-Si-O弯曲运动演变为更长的运动,例如由硅酸盐四面体旋转和硅酸盐板剪切引起的硅酸盐板变形。在镁八面体片周围。

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