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Mossbauer spectroscopy of Zn-poor and Zn-rich rhodonite

机译:贫锌和富锌的菱锰矿的Mossbauer光谱

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Room-temperature Mossbauer spectra of five specimens of typical, Zn-poor rhodonite and five of Zn-rich rhodonite ("fowlerite") have been obtained to determine whether the spectra reflect structural differences between the two varieties. All Fe is divalent and in the high spin state, and the spectra support the interpretation that Fe is present in all five M sites. Assignment of Mossbauer doublets to specific sites is made principally on the basis of isomer shift values and relationships between quadrupole splitting and polyhedral distortion parameters determined from previously reported crystal-structure refinements. Trends in Mossbauer parameters show correlations with trends in steric details of the sites, both among individual M sites within Zn-rich and Zn-poor varieties and between corresponding M sites of rhodonite and fowlerite. In particular, the Mossbauer parameters for the geometrically similar M1 and M2 sites are similar, and those of M4 and M5 reflect the tendency of the former toward more tetrahedral character and the latter toward less distortion in fowlerite. Iron occupancy is largely a function of polyhedral volume, although there is a secondary preference for octahedral coordination. Structural differences previously determined between rhodonite and fowlerite, which are driven principally by high concentrations of Zn in M4 and Ca in M5, are structurally pervasive and are maintained even when Fe substitutes for Zn or Ca.
机译:已经获得了五个典型的贫锌rhodonite和五个富锌rhodonite(“ fowlerite”)的室温Mossbauer光谱,以确定光谱是否反映了两个品种之间的结构差异。所有的Fe都是二价的并且处于高自旋态,并且光谱支持以下解释:所有五个M位都存在Fe。 Mossbauer偶合体分配到特定位点的方法主要是基于异构体位移值以及四极分裂和多面体形变参数之间的关系,这些参数是由先前报道的晶体结构改进确定的。 Mossbauer参数的趋势表明,富锌和贫锌品种中的单个M位点之间以及菱锰矿和闪锌矿的相应M位点之间都与位点的空间细节趋势相关。特别是,在几何上相似的M1和M2位置的Mossbauer参数是相似的,而M4和M5的参数则反映了前者朝向四面体特征的趋势,而后者则朝着较小的铬铁矿畸变的趋势。铁的占有率很大程度上是多面体体积的函数,尽管八面体协调性是次要的。以前在菱锰矿和铬铁矿之间确定的结构差异主要由M4中的Zn和M5中的Ca引起,在结构上是普遍存在的,即使用Fe代替Zn或Ca也可以保持这种结构差异。

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