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首页> 外文期刊>Mineralogical Magazine >The crystal chemistry of oxo-mangani-leakeite and mangano-mangani-ungarettiite from the Hoskins mine and their impossible solid-solution: An XRD and FTIR study
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The crystal chemistry of oxo-mangani-leakeite and mangano-mangani-ungarettiite from the Hoskins mine and their impossible solid-solution: An XRD and FTIR study

机译:来自Hoskins Mine的Oxo-mangani-Leakeite和Mangano-Mangani-Ungarettiite的晶体化学及其不可能的固体解决方案:XRD和FTIR研究

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摘要

New chemical (EMP, SIMS) and structural data are reported for a suite of crystals of oxo-mangani-leakeite and mangano-mangani-ungarettiite from their common type locality, the Hoskins mine (New South Wales, Australia). Notwithstanding the low OH content, FTIR analysis of selected samples has provided considerable information on short-range order in these Mn3+-rich amphiboles, and shows that Li is associated with occupied A sites and is linked to the oxo-component at the O(3) site. Comparative analysis of all available data allows us to: (1) further improve our understanding of the crystal-chemistry of these very peculiar compositions of the oxo-amphibole group; and (2) calculate reliable site-populations. The proposed limited compositional variability has been confirmed. The two amphiboles have completely different arrangements of R-C(3+) cations. In oxo-mangani-leakeites, those R-C(3+) cations related to the oxo-component occur at the M(1) site, whereas those R-C(3+) cations related to the leakeite charge-arrangement occur at the M(2) site. In mangano-mangani-ungarettiite, all R-C(3+) cations order at the M(1) and M(3) sites, and local bond-valence requirements are satisfied by the presence of Mn3+, which assumes a strongly distorted coordination due to its degenerate e(g) electronic state. Therefore, the inverse patterns observed for both cation-ordering and deformation of the octahedra are incompatible with solid-solution between these two species that coexist at the Hoskins mine.
机译:据报道了新的化学(EMP,SIMS)和结构数据,为来自他们共同的类型的地区,Hoskins Mine(澳大利亚新南威尔士州)的oxo-mangani-leagkeite和mangano-mangani-nungarettiite的晶体。尽管如此,尤其是oh内容,所选样品的FTIR分析提供了关于这些Mn3 + -RICH倒出的短距离顺序的相当数量的信息,并表明Li与占用位点相关,并与O(3的氧代组分相关联) 地点。对所有可用数据的比较分析允许我们:(1)进一步改善我们对氧代氧吡咯基的这些非常奇特组合物的晶体化学的理解; (2)计算可靠的网站群体。已经确认了所提出的有限的组成变异性。两个倒风具有完全不同的R-C(3+)阳离子的布置。在氧代 - 锰 - 琼脂苷中,与氧代组分相关的那些RC(3+)阳离子发生在M(1)位点,而与狄肌电荷排列有关的那些RC(3+)阳离子发生在M(2 ) 地点。在Mangano-Mangani-Ungarettiite中,Mn3 +的存在满足M(1)和M(3)位点的所有RC(3+)阳离子命令以及局部键合价要求,这假设由于的强烈扭曲的协调其堕落的E(g)电子国家。因此,对于八面体的阳离子排序和变形观察到的逆模式与在霍西基斯矿井中共存的这两种物种之间的固溶体不相容。

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