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首页> 外文期刊>Physics and chemistry of minerals >Structural iron in dioctahedral and trioctahedral smectites: a polarized XAS study
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Structural iron in dioctahedral and trioctahedral smectites: a polarized XAS study

机译:八面体和三面体蒙脱石中的结构铁:极化XAS研究

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The chemical form of structural Fe in smectites influences many physicochemical properties of these clay minerals. Powder EXAFS data for structural Fe in smectites have been reported; however, the preferred orientation of clay platelets with respect to the X-ray beam may lead to erroneous conclusions on the local chemical environment. Dioctahedral montmorillonite and for the first time trioctahedral hectorite were prepared as textured samples, and the Fe local environment was probed by analysis of the X-ray absorption pre-edge peaks at the magic angle and by polarized EXAFS (P-EXAFS) spectroscopy. Compared to powder measurements, overlapping contributions from shells with distinct orientations can be filtered more easily by P-EXAFS, thus decreasing uncertainties on structural parameters. The pre-edge spectrum of montmorillonite is similar to spectra commonly reported for dioctahedral smectites. In contrast, the pre-edge spectrum of hectorite is notably distinct and hints to either differences in the site symmetry and/or in covalence. In both smectites, Fe is surrounded by a first O shell at a distance consistent with sixfold-coordinated Fe(III), suggesting that Fe(III) is located in the smectite octahedral sheet. This is corroborated by the distances and orientations of neighboring cationic shells, such as in-plane (Mg, Al) and out-of-plane Si shells. For montmorillonite, the results indicate Fe substitution for Al/Mg in the octahedral sheet, and a number of Fe neighbors consistent with random distribution in the octahedral sheet. For hectorite, results indicate a slight tendency for Fe atoms to form pairs in octahedral sheets; however, low numbers of neighboring cations were obtained, presumably a consequence of the presence of vacancies and/or Li in the vicinity of Fe, or of the coexistence of Fe and Mg neighbors with mutually canceling EXAFS waves. Consistent with pre-edge data, the coordination numbers can also indicate some incoherency in Fe-cation interatomic distances in hectorite as a consequence of site distortion. These results suggest that Fe3+ in hectorite locally distorts the structure of the trioctahedral phyllosilicate and tends to aggregate charge-deficient (i.e., vacant or Li+-containing) octahedral sites.
机译:蒙脱石中结构铁的化学形式影响这些粘土矿物的许多物理化学性质。已经报道了蒙脱石中结构铁的粉末EXAFS数据。然而,粘土薄片相对于X射线束的优选取向可能导致对当地化学环境的错误结论。制备了八面体蒙脱石和首次八面体锂蒙脱石作为织构样品,通过分析魔角处的X射线吸收前缘峰并通过偏振EXAFS(P-EXAFS)光谱探测了铁的局部环境。与粉末测量相比,P-EXAFS可以更轻松地过滤出具有不同方向的壳的重叠贡献,从而减少了结构参数的不确定性。蒙脱石的前缘光谱类似于通常报道的八面体蒙脱石的光谱。相反,锂蒙脱石的前缘光谱明显不同,这暗示了位点对称性和/或共价的差异。在两种蒙脱石中,Fe都被第一个O壳围绕着,且其距离与六重配位的Fe(III)一致,这表明Fe(III)位于蒙脱石的八面体薄片中。相邻的阳离子壳(例如面内(Mg,Al)和面外Si壳)的距离和方向证实了这一点。对于蒙脱石,结果表明在八面体中Fe被Al / Mg取代,并且大量的Fe邻域与八面体中的随机分布相一致。对于锂蒙脱石,结果表明Fe原子在八面体片中形成对的趋势很小。然而,由于阳离子附近存在空位和/或锂,或者由于FeA和Mg邻域与EXAFS波相互抵消,因此获得的邻阳离子数量少。与前边缘数据一致,配位数还可以表明由于位错而导致的锂蒙脱石中Fe-阳离子原子间距离存在一定的不连贯性。这些结果表明,锂蒙脱石中的Fe 3+局部地扭曲了三八面体层状硅酸盐的结构,并倾向于聚集电荷不足的(即空的或含Li +的)八面体位点。

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