首页> 外文OA文献 >Lead-tellurium oxysalts from Otto Mountain near Baker, California: V. Timroseite, Pb_2Cu_5^(2+)(Te^(6+)O_6)_2(OH)_2, and paratimroseite, Pb_2Cu_4^(2+)(Te^(6+)O_6)_2(H_2O)_2, two new tellurates with Te-Cu polyhedral sheets
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Lead-tellurium oxysalts from Otto Mountain near Baker, California: V. Timroseite, Pb_2Cu_5^(2+)(Te^(6+)O_6)_2(OH)_2, and paratimroseite, Pb_2Cu_4^(2+)(Te^(6+)O_6)_2(H_2O)_2, two new tellurates with Te-Cu polyhedral sheets

机译:来自加利福尼亚州贝克附近的奥托山的铅碲含氧盐:V.铁镁石,Pb_2Cu_5 ^(2 +)(Te ^(6+)O_6)_2(OH)_2,以及准蒙脱石,Pb_2Cu_4 ^(2 +)(Te ^( 6+)O_6)_2(H_2O)_2,两个带有Te-Cu多面体片的新碲化物

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摘要

Timroseite, Pb_2Cu_5^(2+)(Te^(6+)O_6)_2(OH)_2, and paratimroseite, Pb_2Cu_4^(2+)(Te^(6+)O_6)_2(H_2O)_2, are two new tellurates from Otto Mountain near Baker, California. Timroseite is named in honor of Timothy (Tim) P. Rose and paratimroseite is named for its relationship to timroseite. Both new minerals occur on fracture surfaces and in small vugs in brecciated quartz veins. Timroseite is directly associated with acanthite, cerussite, bromine-rich chlorargyrite, chrysocolla, gold, housleyite, iodargyrite, khinite-4O, markcooperite, ottoite, paratimroseite, thorneite, vauquelinite, and wulfenite. Paratimroseite is directly associated with calcite, cerussite, housleyite, khinite-4O, markcooperite, and timroseite. Timroseite is orthorhombic, space group P2_1nm, a = 5.2000(2), b = 9.6225(4), c = 11.5340(5) Å, V = 577.13(4) Å^3, and Z = 2. Paratimroseite is orthorhombic, space group P2_12_12_1, a = 5.1943(4), b = 9.6198(10), c = 11.6746(11) Å, V = 583.35(9) Å^3, and Z = 2. Timroseite commonly occurs as olive to lime green, irregular, rounded masses and rarely in crystals as dark olive green, equant rhombs, and diamond-shaped plates in subparallel sheaf-like aggregates. It has a very pale yellowish green streak, dull to adamantine luster, a hardness of about 2 1/2 (Mohs), brittle tenacity, irregular fracture, no cleavage, and a calculated density of 6.981 g/cm^3. Paratimroseite occurs as vibrant "neon" green blades typically intergrown in irregular clusters and as lime green botryoids. It has a very pale green streak, dull to adamantine luster, a hardness of about 3 (Mohs), brittle tenacity, irregular fracture, good {001} cleavage, and a calculated density of 6.556 g/cm^3. Timroseite is biaxial (+) with a large 2V, indices of refraction > 2, orientation X = b, Y = a, Z = c and pleochroism: X = greenish yellow, Y = yellowish green, Z = dark green (Z > Y > X). Paratimroseite is biaxial (–) with a large 2V, indices of refraction > 2, orientation X = c, Y = b, Z = a and pleochroism: X = light green, Y = green, Z = green (Y = Z X). Electron microprobe analysis of timroseite provided PbO 35.85, CuO 29.57, TeO_3 27.75, Cl 0.04, H_2O 1.38 (structure), O≡Cl –0.01, total 94.58 wt%; the empirical formula (based on O+Cl = 14) is Pb_(2.07) Cu^(2+)_(4.80)Te^(6+)_(2.04)O_(12)(OH)_(1.98)Cl_(0.02). Electron microprobe analysis of paratimroseite provided PbO 36.11, CuO 26.27, TeO_3 29.80, Cl 0.04, H_2O 3.01 (structure), O≡Cl –0.01, total 95.22 wt%; the empirical formula (based on O+Cl = 14) is Pb_(1.94)Cu^(2+)_(3.96)Te^(6+)_(2.03)O_(12)(H_2O)_(1.99)Cl_(0.01). The strongest powder X-ray diffraction lines for timroseite are [d_(obs) in Å (hkl) I]: 3.693 (022) 43, 3.578 (112) 44, 3.008 (023) 84, 2.950 (113) 88, 2.732 (130) 100, 1.785 (multiple) 33, 1.475 (332) 36; and for paratimroseite 4.771 (101) 76, 4.463 (021) 32, 3.544 (120) 44, 3.029 (023,122) 100, 2.973 (113) 48, 2.665 (131) 41, 2.469 (114) 40, 2.246 (221) 34. The crystal structures of timroseite (R_1 = 0.029) and paratimroseite (R_1 = 0.039) are very closely related. The structures are based upon edge- and corner-sharing sheets of Te and Cu polyhedra parallel to (001) and the sheets in both structures are identical in topology and virtually identical in geometry. In timroseite, the sheets are joined to one another along c by sharing the apical O atoms of Cu octahedra, as well as by sharing edges and corners with an additional CuO_5 square pyramid located between the sheets. The sheets in paratimroseite are joined only via Pb-O and H bonds.
机译:钛铁矿Pb_2Cu_5 ^(2 +)(Te ^(6+)O_6)_2(OH)_2和次蒙脱石Pb_2Cu_4 ^(2 +)(Te ^(6+)O_6)_2(H_2O)_2是两个新的来自加利福尼亚州贝克附近的奥托山的碲。为了纪念蒂莫西(Tim)P. Rose,命名了玫瑰铁矿。两种新矿物都出现在断裂表面和角砾岩石英脉的小孔中。钛铁矿直接与th石,铈铁矿,富溴的绿菱锰矿,温石棉,金,菱铁矿,碘长晶石,褐铁矿4O,Markcooperite,硅铁矿,次蒙脱石,尖晶石,堇青石和白云母结合。准蒙脱石与方解石,陶粒,纤铁矿,khinite-4O,堇青石和蒙脱石直接相关。菱铁矿是斜方晶,空间群P2_1nm,a = 5.2000(2),b = 9.6225(4),c = 11.5340(5)Å,V = 577.13(4)Å^ 3,Z = 2 P2_12_12_1组,a = 5.1943(4),b = 9.6198(10),c = 11.6746(11)Å,V = 583.35(9)Å^ 3,Z = 2。呈圆形团块,很少呈暗橄榄绿色,等量菱形和呈平行板状聚集体的菱形板状晶体。它具有非常淡的黄绿色条纹,暗淡至金刚烷光泽,硬度约为2 1/2(Mohs),坚韧,不规则断裂,无解理,计算密度为6.981 g / cm ^ 3。准蒙脱石以充满活力的“霓虹”绿色叶片出现,通常以不规则簇的形式共生,并以石灰绿色的类晶状体出现。它具有非常淡的绿色条纹,暗淡的金刚烷光泽,约3(Mohs)的硬度,坚韧的韧性,不规则的断裂,良好的{001}劈开性和计算的密度6.556 g / cm ^ 3。菱铁矿是双轴(+),具有2V大,折射率> 2,方向X = b,Y = a,Z = c且具有多色性:X =绿黄色,Y =黄绿色,Z =深绿色(Z> Y > X)。准蒙脱石是双轴(–),具有2V大,折射率> 2,方向X = c,Y = b,Z = a且具有多色性:X =浅绿色,Y =绿色,Z =绿色(Y = Z X)。菱镁矿的电子探针分析表明,PbO 35.85,CuO 29.57,TeO_3 27.75,Cl 0.04,H_2O 1.38(结构),O≡Cl–0.01,总含量94.58 wt%;经验公式(基于O + Cl = 14)为Pb_(2.07)Cu ^(2 +)_(4.80)Te ^(6 +)_(2.04)O_(12)(OH)_(1.98)Cl_( 0.02)。次微晶石的电子探针分析提供了PbO 36.11,CuO 26.27,TeO_3 29.80,Cl 0.04,H_2O 3.01(结构),O≡Cl–0.01,总量为95.22 wt%;经验公式(基于O + Cl = 14)为Pb_(1.94)Cu ^(2 +)_(3.96)Te ^(6 +)_(2.03)O_(12)(H_2O)_(1.99)Cl_( 0.01)。蒙脱石最强的粉末X射线衍射线为[d_(obs)inÅ(hkl)I]:3.693(022)43,3.578(112)44,3.008(023)84,2.950(113)88,2.732( 130)100,1.785(multiple)33,1.475(332)36;以及次tim石4​​.771(101)76,4.463(021)32,3.544(120)44,3.029(023,122)100,2.973(113)48,2.665(131)41,2.469(114)40,2.246(221)34蒙脱石(R_1 = 0.029)和次蒙脱石(R_1 = 0.039)的晶体结构密切相关。该结构基于平行于(001)的Te和Cu多面体的边缘和角共享板,这两种结构中的板的拓扑结构相同,并且几何形状几乎相同。在菱镁矿中,通过共享八面体的顶部O原子,以及通过共享位于两个薄片之间的额外CuO_5方形金字塔的边和角,使薄片沿c彼此连接。蒙脱石中的薄片仅通过Pb-O和H键连接。

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