首页> 外文期刊>Acta Crystallographica, Section B. Structural science, crystal engineering and materials >A crystallographic excursion in the extraordinary world of minerals: the case of Cu- and Ag-rich sulfosalts
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A crystallographic excursion in the extraordinary world of minerals: the case of Cu- and Ag-rich sulfosalts

机译:在矿物质的非凡世界中的一个晶体游览:富含Cu和Ag的硫磺化的情况

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摘要

Copper and silver are common constituents in natural sulfosalts and can be present as minor or major components. Owing to the different kinds of coordination they can assume, these elements give rise to a number of sulfosalts that are usually quite complex to describe from a structural point of view because of the presence of twinning, disorder, polytypism and sometimes incommensurate modulation. Moreover, it is common to find them in different, partially occupied split sites, favoring the presence of strong ionic conductivity that can be related to a number of interesting technological properties. In this regard, a series of Cu- and Ag-rich sulfosalts showing an excess of these cations with respect to As, Sb and Bi is particularly interesting. Their crystal structures as well as their potential interest for materials science and solid-state physics are outlined. Copper- and mixed (Cu, Ag)-sulfosalts belonging to the wittichenite, tetrahedrite, galkhaite, routhierite and nowackiite series are discussed, together with some related compounds.Whereas in the wittichenite series Cu has either a trigonal planar or tetrahedral coordination, in members of the other series this element forms three-dimensional tetrahedral frameworks giving rise to cavities hosting other cations and anions. More difficult is the description of Ag-rich sulfosalts owing to the highly variable coordination environments shown by this element. Structural features of selected Ag sulfosalts together with members of the argyrodite series are discussed, highlighting the particular properties derived from the behavior of Ag.
机译:铜和银是天然硫磺中的常见成分,可以作为未成年间或主要成分存在。由于他们可以假设的不同协调,这些元素产生了许多硫磺,通常是由于孪生,病症,多液氮的存在而从结构性的角度来描述,这通常是非常复杂的。此外,常常在不同的部分占用的分裂位点中找到它们,有利于存在强烈的离子电导率,这可能与许多有趣的技术特性有关。在这方面,一系列Cu-和Ag的硫磺表显示出相对于Sb和Bi的过量的这些阳离子是特别有趣的。概述了它们的晶体结构以及材料科学和固态物理学的潜在兴趣。讨论了属于Witchenite,Tetrahedrite,Galkhaite,Routhierite和Dowackiite系列的铜和混合(Cu,Ag) - 与一些相关的化合物一起进行讨论。在Witchenite系列Cu中有一个Trigonal Paralar或四面体协调,在成员在其他系列中,该元素形成三维四面体框架,从而产生托管其他阳离子和阴离子的空腔。由于该元素所示的高度可变的协调环境,更困难的是AG富含硫磺的描述。讨论了所选AG硫磺的结构特征与argyrodite系列的成员一起,突出了来自AG的行为的特定性质。

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