首页> 外文期刊>Zeitschrift fur Naturforschung, B. A Journal of Chemical Sciences >Mixed alkali oxidosulfidomolybdatesA _2[MoO _xS _(4-x)] (x = 1, 2, 3; A = K, Rb, Cs, NH _4). Synthesis, crystal structure and properties [Gemischte alkalimetall-oxidosulfidomolybdateA _2[MoO _xS _(4- x)] (x = 1, 2, 3; A = K, Rb, Cs, NH _4).Synthesen, kristallstrukturen und eigenschaften]
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Mixed alkali oxidosulfidomolybdatesA _2[MoO _xS _(4-x)] (x = 1, 2, 3; A = K, Rb, Cs, NH _4). Synthesis, crystal structure and properties [Gemischte alkalimetall-oxidosulfidomolybdateA _2[MoO _xS _(4- x)] (x = 1, 2, 3; A = K, Rb, Cs, NH _4).Synthesen, kristallstrukturen und eigenschaften]

机译:混合碱金属氧硫化钼钼酸盐A _2 [MoO _xS _(4-x)](x = 1,2,3; A = K,Rb,Cs,NH_4)。合成,晶体结构和性质[混合碱金属氧化物硫代钼酸盐A _2 [MoO _xS _(4-x)](x = 1,2,3; A = K,Rb,Cs,NH _4)。合成,晶体结构和性质]

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Mixed sulfido/oxidomolybdate anions [MoO _xS _(4-x)] 2- (x = 1, 2, 3) have been prepared by passing H _2S gas through a solution of oxidomolybdates. The alkali salts of K+, Rb+, Cs+, and NH+4 precipitate as crystallinez salts from these solutions depending on the pH, the polarity of the solvent, the educt concentrations and the temperature. Their structures have been determined by means of X-ray single-crystal diffraction data. All trisulfidomolybdates A _2[MoOS _3] (A = NH4/K/Rb/Cs) are isotypic with the tetrasulfido salts, exhibiting the ? -K _2[SO _4] type (orthorhombic, space group Pnma, Z = 4; for A = Rb: a = 940.62(4), b = 713.32(4), c = 1164.56(5) pm, R1 = 0.0281). In contrast, the disulfidomolybdates exhibit a rich crystal chemistry, forming three different structure types depending on the preparation conditions and the size of the A cation: All four cations form salts crystallizing with the NH _(42)[WO _2S _2] structure type (monoclinic, space group C2/c, Z = 4, for A = Rb: a = 1144.32(11), b = 732.60(4), c = 978.99(10) pm, ? = 120.324(7)°, R1 = 0.0274). For the three alkali metal cations a second polymorph with a new structure type (monoclinic, space group P21/c, Z = 4) is observed in addition (for A = Rb: a = 674.83(2), b = 852.98(3), c = 1383.10(9) pm, ? = 115.19(1)°, R1 = 0.0216). The cesium salt also crystallizes with a third modification of another new structure type (orthorhombic, space group Pbcn, Z = 4, a = 915.30(6), b = 777.27(7), c = 1120.02(7) pm, R1 = 0.0350). Only for K, an anhydrous monosulfidomolybdate could be obtained (K _2[MoO4] structure type, monoclinic, space group C2/m, Z = 4, a = 1288.7(3), b = 615.7(2), c = 762.2(1) pm, ? = 109.59(1)°, R1 = 0.0736). The intramolecular chemical bonding in the molybdate anions is discussed and compared with the respective vanadates. Hereby aspects like bond lengths, bond strengths and force constants derived from Raman spectroscopy, are taken into account. Especially for the polymorphic disulfido salts, in-depth analyses of the local coordination numbers and the packing of the ions are presented. The gradual bathochromic shift of the crystal color with increasing S content and increasing size of the counter cations A and molar volumes (for the polymorphic forms), respectively, is in accordance with the increase of the experimental (UV/Vis spectroscopy) and calculated (FP-LAPW band structure theory) band gaps.
机译:通过使H _2S气体通过氧化钼酸盐溶液,可以制备混合的硫化基/氧化钼酸盐阴离子[MoO _xS _(4-x)] 2-(x = 1,2,3)。 K +,Rb +,Cs +和NH + 4的碱金属盐根据pH,溶剂的极性,离析物浓度和温度从这些溶液中以结晶盐形式沉淀出来。它们的结构已经通过X射线单晶衍射数据确定。所有的三硫代钼酸盐A _2 [MoOS _3](A = NH4 / K / Rb / Cs)与四硫键盐同型,表现出α? -K _2 [SO _4]类型(正交,空间群Pnma,Z = 4;对于A = Rb:a = 940.62(4),b = 713.32(4),c = 1164.56(5)pm,R1 = 0.0281) 。相比之下,二硫代钼酸盐显示出丰富的晶体化学性质,根据制备条件和A阳离子的大小,形成了三种不同的结构类型:所有四种阳离子形成以NH _(42)[WO _2S _2]结构类型结晶的盐(单斜,空间群C2 / c,Z = 4,对于A = Rb:a = 1144.32(11),b = 732.60(4),c = 978.99(10)pm,?= 120.324(7)°,R1 = 0.0274 )。对于这三种碱金属阳离子,还观察到具有新结构类型的第二种多晶型物(单斜晶系,空间群P21 / c,Z = 4)(对于A = Rb:a = 674.83(2),b = 852.98(3) c = 1383.10(9)pm,?= 115.19(1)°,R1 = 0.0216)。铯盐还会以另一种新结构类型的第三种结晶形式结晶(斜方晶系,空间群Pbcn,Z = 4,a = 915.30(6),b = 777.27(7),c = 1120.02(7)pm,R1 = 0.0350 )。仅对于K,可以获得无水单硫代钼酸盐(K _2 [MoO4]结构类型,单斜,空间群C2 / m,Z = 4,a = 1288.7(3),b = 615.7(2),c = 762.2(1 )pm,θ= 109.59(1)°,R1 = 0.0736)。讨论了钼酸根阴离子中的分子内化学键,并与相应的钒酸根进行了比较。因此,考虑了诸如拉曼光谱的键长,键强度和力常数等方面。特别是对于多晶型二硫键盐,对局部配位数和离子堆积进行了深入分析。晶体颜色随S含量的增加和抗衡阳离子A的大小以及摩尔体积(对于多晶型物)的增加而逐渐发生红移,是根据实验(UV / Vis光谱)的增加而计算的( FP-LAPW能带结构理论)带隙。

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