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首页> 外文期刊>American Mineralogist >Description and crystal structure of liversidgeite, Zn6(PO4)4{middle dot}7H2O, a new mineral from Broken Hill, New South Wales, Australia
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Description and crystal structure of liversidgeite, Zn6(PO4)4{middle dot}7H2O, a new mineral from Broken Hill, New South Wales, Australia

机译:澳洲新南威尔士州布罗肯希尔(Broken Hill)的新矿物Zn6(PO4)4 {中点} 7H2O的描述及晶体结构

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摘要

Liversidgeite, ideally Zn6(PO4)4·7H2O, is a new mineral from Block 14 Opencut, Broken Hill, New South Wales, Australia. The mineral occurs as white, thin, bladed crystals and as hemispherical aggregates of radiating crystals in cavities in sphalerite-galena ore. Associated minerals are anglesite, pyromorphite, greenockite, sulfur, and an unknown Zn phosphate sulfate. Individual crystals are up to 0.1 mm in length and 0.05 mm across. Liversidgeite is transparent to translucent, with a vitreous luster and a white streak. It is brittle with an irregular fracture, the Mohs hardness is ~3–3.5, and the observed and calculated densities are 3.21(2) and 3.28 g/cm3, respectively. Chemical analysis by electron microprobe gave ZnO 54.62, MnO 0.49, PbO 0.18, P2O5 32.62, As2O5 0.65, SO3 0.35, H2O 14.04, total 102.95 wt%, with H2O content derived from the refined crystal structure. The empirical formula calculated on the basis of 23 O atoms is Pb0.01(Zn5.86Mn0.06)5.92(P4.01As0.05S0.04)4.10O16.20·6.8H2O. Liversidgeite is triclinic, space group P, with a = 8.299(1), b = 9.616(1), c = 12.175(1) Å, = 71.68(1), β = 82.02(1), = 80.18(1)°, V = 905.1(2) Å3 (single-crystal data), and Z = 2. The six strongest lines in the X-ray powder diffraction pattern are [d(Å), (I), (hkl)]: 8.438 (80) (011), 3.206 (60) (01), 2.967 (75) (22, 114), 2.956 (75) (21), 2.550 (85) (233, 23), 2.537 (100) (22, 01, 31). The crystal structure of liversidgeite was refined to an R1 index of 5.95% based on 3054 observed (Fo > 4Fo) reflections measured with MoK X-radiation. The structure is based on two distinct, infinite zigzag chains of edge-sharing Zn6 ( = unspecified anion) octahedra that extend in the a direction. The chains link to each other via common corners and also via corner-sharing PO4 tetrahedra, forming sheets parallel to the (011) plane. The sheets link via [Zn28] dimeric building units, comprising edge-sharing Zn5 trigonal bipyramids and Zn4 tetrahedra, resulting in an open framework. Large ellipsoidal channels extend along the a direction and are occupied by interstitial H2O groups and the H atoms of the H2O groups that coordinate to the Zn cations. An extensive network of hydrogen bonds provides additional linkage between the sheets in the structure, via the interstitial H2O groups. The topology of the liversidgeite structure is identical to that of synthetic, monoclinic Zn2Co4(PO4)4(H2O)5·2H2O.
机译:理想的Zn 6 (PO 4 4 ·7H 2 O菱锰矿是一种新的矿物质 来自澳大利亚新南威尔士州布罗肯希尔(Broken Hill)的14号露天矿。 矿物质以白色,薄而刃状的晶体以及半球形的辐射晶体聚集的形式存在。闪锌矿方铅矿 矿石中的孔洞。伴生的矿物是角铁矿,黄铁矿,绿岩, 硫和未知的磷酸锌硫酸盐。单个晶体 的长度最大为0.1毫米,宽为0.05毫米。 Liversidgeite 透明至半透明,具有玻璃光泽和 白色条纹。它易碎,有不规则的断裂, 莫氏硬度为〜3–3.5,观察和计算的 密度为3.21(2)和3.28 g / cm 3 。电子探针化学 分析得出ZnO 54.62,MnO 0.49,PbO 0.18,P 2 O 5 32.62,砷 2 O 5 0.65,SO 3 0.35,H 2 O 14.04,总计102.95 wt%,H 2 O含量来自精细的晶体结构。 基于23个O原子 计算的经验公式为Pb 0.01 (Zn 5.86 Mn 0.06 5.92 (P 4.01 As 0.05 S 0.04 4.10 O 16.20 ·6.8H 2 O. Liversidgeite是三斜晶,空间群P,a = 8.299(1),b = 9.616(1),c = 12.175(1) Å,= 71.68(1),β= 82.02( 1)= 80.18(1)°,V = 905.1(2)Å 3 (单晶数据),Z = 2.六个 < / sup> X射线粉末衍射图中最强的线是 [d(Å),(I),(hkl)]:8.438(80)(011),3.206(60)(01 ),2.967(75)(22、114),2.956(75)(21),2.550(85)(233、23),2 .537(100)(22,01,31)。基于观察到的3054次反射(F o o )反射,将菱锰矿的晶体结构精炼到R1指数为5.95% 。 sup> MoK X射线。该结构基于两个不同的,无限共享的边缘共享Zn 6 (=未指定阴离子)八面体 的之字形链,它们沿a方向延伸。链通过共同的角以及通过角共享PO 4 四面体彼此链接,从而形成平行于(011)平面的薄片。图纸通过[Zn 2 8 ]二​​聚体构建单元链接 ,该单元由边缘共享的Zn 5 三角双锥和Zn 4 四面体,形成开放的 框架。大的椭圆形通道沿a 方向延伸,并被填隙的H 2 O基和H 2 <的H原子 占据与Zn阳离子配位的O基团。广泛的 氢键网络通过间隙H 2 O基团在结构中的薄板之间提供了额外的键。 sup>肝盾结构的拓扑结构与合成的单斜晶Zn 2 Co 4 (PO 4 >) 4 (H 2 O) 5 ·2H 2 O.

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  • 来源
    《American Mineralogist》 |2010年第3期|397-404|共8页
  • 作者单位

    School of Earth and Environmental Sciences, The University of Adelaide, Adelaide, South Australia 5005, Australia|South Australian Museum, North Terrace, Adelaide, South Australia 5000, Australia;

    Institut für Mineralogie und Kristallographie, Geozentrum, Universit?t Wien, Althanstrasse 14, A-1090 Wien, Austria;

    Institut für Mineralogie und Kristallographie, Geozentrum, Universit?t Wien, Althanstrasse 14, A-1090 Wien, Austria;

    Mineralogisch-Petrographische Abteilung, Naturhistorisches Museum, A-1010 Wien, Austria;

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