首页> 外文期刊>American Mineralogist >Single-crystal X-ray diffraction and temperature dependent 57Fe Mossbauer spectroscopy on the hedenbergite-aegirine (Ca,Na)(Fe2+,Fe3+)Si2O6 solid solution
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Single-crystal X-ray diffraction and temperature dependent 57Fe Mossbauer spectroscopy on the hedenbergite-aegirine (Ca,Na)(Fe2+,Fe3+)Si2O6 solid solution

机译:单晶X射线衍射和随温度变化的57Fe Mossbauer光谱在菱铁矿(Ca,Na)(Fe2 +,Fe3 +)Si2O6固溶体上

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摘要

Synthetic samples with different chemical compositions along the hedenbergite–aegirine (CaFe2+Si2O6–NaFe3+Si2O6) solid-solution series have been investigated by single-crystal X-ray diffraction and 57Fe Mössbauer spectroscopy. All compounds show C2/c symmetry, both at 298 K and at low temperature (100 K). The structural changes within the hedenbergite–aegirine series are dominated by the M1 site while the M2 site plays a minor role. Replacement of Fe2+ by Fe3+ increases the polyhedral distortion of the M1 site and causes an increased repulsion between neighboring M1 sites. The changes in M1-site geometry also induce distinct alterations within the kinking state of the tetrahedral chains, but the changes in tetrahedral bond lengths and angles are small. In addition to the single-crystal X-ray diffraction experiments, a large number of synthetic samples were investigated by 57Fe Mössbauer spectroscopy at 298 K and, for three selected compositions, between 80 and 700 K. Here, substantial line broadening of the Fe2+ resonance absorption was observed as an aegirine component is substituted. Two different groups of local distortion environments were observed for Fe2+ within the solid-solution series, which change relative proportions and numeric value of the quadrupole splitting as a function of chemistry and temperature. This line broadening cannot be ascribed to discrete next-nearest-neighbor (NNN) configurations of Ca and Na as has been done in the literature. Above ~250 K, additional resonance absorption appears in the spectra of samples with aegirine components between 20 and 75 mol%. This absorption gains intensity with increasing temperature, while the 57Fe hyperfine parameters approach values intermediate between Fe2+ and Fe3+. This effect is ascribed to fast electron delocalization between Fe2+ and Fe3+ at elevated temperature.
机译:沿 菱锰矿-钙长石(CaFe 2 + Si 2 O 6 –NaFe <通过单晶研究了sup> 3 + Si 2 O 6 固溶体系列sup> X射线衍射和 57 FeMössbauer光谱。所有 化合物在298 K和低温下(sup> (100 K)均显示C2 / c对称性。菱锰矿-aegirine 系列内的结构变化主要由M1站点主导,而M2站点仅扮演 角色。用Fe 3 + 替代Fe 2 + 会增加M1位点的多面体 变形并导致排斥力增加 在相邻的M1站点之间。 M1部位几何形状的变化 还会在四面体链的 的扭结状态内引起明显的变化,但是四面体键 的长度和角度的变化很小。除了单晶 X射线衍射实验外,还通过 57 FeMössbauer光谱在298 < sup> K,并且对于三个选定的成分,介于80和700 K之间。 此处,Fe 2 + 共振吸收的基本线展宽 <观察到/ sup>是由于取代了腺苷成分。在固溶系列中观察到Fe 2 + 的两个不同的局部变形环境 组,它们改变了相对比例 和四极分裂数值作为化学和温度的函数 。不能像文献中所做的那样,将此行拓宽归因于Ca和Na的离散的最近邻(NNN)构型 。在〜250 K之上,具有20%至75 mol%的胺基乙稀组分的 样品的光谱中会出现额外的共振吸收。该 吸收随着温度的升高而增强,而 57 Fe超细参数逼近介于 Fe 之间的值2 + 和Fe 3 + 。这种作用归因于在高温下Fe 2 + 和Fe 3 + 之间快速的电子离域

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    《American Mineralogist》 |2006年第9期|1271-1292|共22页
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    Department of Material Science, Division of Mineralogy, University Salzburg, Hellbrunnerstr. 34, A-5020, Salzburg, Austria|Institute of Crystallography, University of Technology, Rheinisch—Westf?lische Technische Hochschule Aachen, J?gerstrasse 17/19, D-52056, Aachen, Germany;

    Department of Material Science, Division of Mineralogy, University Salzburg, Hellbrunnerstr. 34, A-5020, Salzburg, Austria;

    Institute of Crystallography, University of Technology, Rheinisch—Westf?lische Technische Hochschule Aachen, J?gerstrasse 17/19, D-52056, Aachen, Germany;

    Department of Material Science, Division of Mineralogy, University Salzburg, Hellbrunnerstr. 34, A-5020, Salzburg, Austria;

    Department of Material Science, Division of Mineralogy, University Salzburg, Hellbrunnerstr. 34, A-5020, Salzburg, Austria;

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