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The crystal structure of cualstibite-1M (formerly cyanophyllite), its revised chemical formula and its relation to cualstibite-1T

机译:Cualstibite-1M(以前为蓝藻石)的晶体结构,化学公式的修正及其与Cualstibite-1T的关系

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摘要

The crystal structure of the rare secondary mineral cualstibite-1M (formerly cyanophyllite), originally reported to have the chemical formula 10CuO·2Al2O3·3Sb2O3·25H2O and orthorhombic symmetry, was solved from single-crystal intensity data (Mo-Kα X-radiation, CCD area detector, 293 K, 2θmax = 80) collected on a twinned crystal containing very minor Mg. The mineral is monoclinic, P21/c (no. 14), with a = 9.938(1), b = 8.890(1), c = 5.493(1) Å, β = 102.90(1)°, V = 473.05(11) Å3; R1(F) = 0.0326. All crystals investigated turned out to be non-merohedric twins. The atomic arrangement has a distinctly layered character. Brucite-like sheets composed of two [4 + 2]-coordinated (Cu,Al,Mg) sites are linked by weak hydrogen-bonding (O···O ~ 2.80 Å) to isolated regular Sb(OH)6 octahedra ( = 1.975 Å). The layered, pseudotrigonal character explains the perfect cleavage and the proneness to twinning. The Sb site is fully occupied and the two (Cu,Al,Mg) sites have occupancies of Cu0.79Al0.17Mg0.04 and Cu0.72Al0.23Mg0.05. The Cu-richer site shows a slightly stronger Jahn-Teller-distortion. The resulting empirical formula, which necessitates a H2O-for-OH substitution to obtain charge balance, is (Cu2.23Al0.63Mg0.14)(OH)5.63(H2O)0.37[Sb5+(OH)6]. The ideal chemical formula is (Cu,Al)3(OH)6[Sb5+(OH)6], with Cu:Al = 2:1. The structure is closely related to those of trigonal cualstibite-1T [Cu2AlSb(OH)12, P-3, with ordered Cu-Al distribution in the brucite sheets], and its Zn analogue zincalstibite-1T [Zn2AlSb(OH)12]. Cualstibite-1M and cualstibite-1T are polytypes and, together with zincalstibite-1T, zincalstibite-9R and omsite, belong to the cualstibite group within the hydrotalcite supergroup, which comprises all natural members of the large family of layered double hydroxides (LDH).
机译:根据单晶强度数据(Mo-KαX射线,X射线衍射)解析了稀有次生矿物质Cualstibite-1M(以前为蓝藻石)的晶体结构,该晶体最初具有化学式10CuO·2Al2O3·3Sb2O3·25H2O和正交对称性。 CCD面积检测器293 K,2θmax= 80)收集在含极少量Mg的孪晶上。矿物为单斜晶,P21 / c(编号14),a = 9.938(1),b = 8.890(1),c = 5.493(1)Å,β= 102.90(1)°,V = 473.05(11 )Å3; R1(F)= 0.0326。所有被调查的晶体都证明是非多面体孪晶。原子排列具有明显的分层特征。由两个[4 + 2]配位的(Cu,Al,Mg)位组成的水镁石状薄片通过弱氢键(O···O〜2.80Å)连接到孤立的规则Sb(OH)6八面体(< Sb-O> =1.975Å)。分层的伪三角形特征说明了完美的解理和孪生的倾向。 Sb站点已被完全占用,两个(Cu,Al,Mg)站点的占有率分别为Cu0.79Al0.17Mg0.04和Cu0.72Al0.23Mg0.05。富铜站点显示出Jahn-Teller失真稍强。需要用H2O取代OH才能获得电荷平衡的所得经验公式为(Cu2.23Al0.63Mg0.14)(OH)5.63(H2O)0.37 [Sb5 +(OH)6]。理想的化学式为(Cu,Al)3(OH)6 [Sb5 +(OH)6],Cu:Al = 2:1。该结构与三角形环刺铁1T [Cu2AlSb(OH)12,P-3,在水镁石片材中有序分布的Al-Al]及其锌类似物锌铝刺铁1T [Zn2AlSb(OH)12]密切相关。 Cualstibite-1M和cualstibite-1T是多型的,与zincalstibite-1T,zincalstibite-9R和omsite一起属于水滑石超群中的cualstibite基团,该基团包括大分子层状双氢氧化物(LDH)的所有自然成员。

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  • 来源
    《Mineralogy and Petrology》 |2013年第2期|171-178|共8页
  • 作者单位

    Mineralogisch-Petrographische Abt. Naturhistorisches Museum">(1);

    Institute of Mineralogy and Crystallography University of Vienna">(2);

    Institute of Mineralogy and Crystallography University of Vienna">(2);

    Institute of Mineralogy and Crystallography University of Vienna">(2);

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  • 入库时间 2022-08-18 00:12:43

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