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利用溶剂热方法在温和的条件下合成了二个新的硫代锡酸盐[Mn(en)3]2Sn2S6·2H2O(en=H2NC2H4NH2) (1)和[Mn(dien)2]2Sn2S6 (dien=H2NC2H4NHC2H4NH2) (2),通过X-射线衍射分析表征其晶体结构。化合物1的晶体学参数:C12H48Mn2N12S6Sn2·2H2O,Mr=936.28,单斜晶系,P21/c,a=1.012 9(3),b=1.574 6(4),c=1.152 4(3) nm,β=102.36(1)°,V=1.795 5(8) nm3Z=2,Dc=1.732 g·cm-3μ(Mo)=2.442 mm-1F(000)=940,R=0.063 3,wR=0.081 4;化合物2的晶体学参数:C16H52Mn2N12S6Sn2Mr=952.32,单斜晶系,P21/c,a=1.248 12(3),b=0.937 60(4), c=1.776 17 (7) nm,β=121.752(2)°,V=1.767 5(1) nm3Z=2,Dc=1.789 g·cm-3μ(Mo)=2.479 mm-1F(000)=956,R=0.057 9,wR=0.137 4。在两个化合物中存在的[Sn2S6]4-阴离子均由共边的两个SnS4四面体构成。在1中,锰离子螯合3个乙二胺做为阳离子模板,而在2中锰离子螯合2个二乙烯三胺做为阳离子模板。金属配合物作为模板对阴离子[Sn2S6]4-在晶体结构中的排列产生重要的影响。  相似文献   
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Two types of 4f–3d thiostannates with general formula [Hen]2[Ln(en)4(CuSn3S9)] ? 0.5 en ( Ln1 ; Ln=La, 1 ; Ce, 2 ) and [Hen]4[Ln(en)4]2[Cu6Sn6S20] ? 3 en ( Ln2 ; Ln=Nd, 3 ; Gd, 4 ; Er, 5 ) were prepared by reactions of Ln2O3, Cu, Sn, and S in ethylenediamine (en) under solvothermal conditions between 160 and 190 °C. However, reactions performed in the range from 120 to 140 °C resulted in crystallization of [Sn2S6]4? compounds and CuS powder. In 1 and 2 , three SnS4 tetrahedra and one CuS3 triangle are joined by sharing sulfur atoms to form a novel [CuSn3S9]5? cluster that coordinates to the Ln3+ ion of [Ln(en)4]3+ (Ln=La, Ce) as a monodentate ligand. The [CuSn3S9]5? unit is the first thio‐based heterometallic adamantane‐like cluster coordinating to a lanthanide center. In 3 – 5 , six SnS4 tetrahedra and six CuS3 triangles are connected by sharing common sulfur atoms to form the ternary [Cu6Sn6S20]10? cluster, in which a Cu6 core is enclosed by two Sn3S10 fragments. The topological structure of the novel Cu6 core can be regarded as two Cu4 tetrahedra joined by a common edge. The Ln3+ ions in Ln1 and Ln2 are in nine‐ and eightfold coordination, respectively, which leads to the formation of the [CuSn3S9]5? and [Cu6Sn6S20]10? clusters under identical synthetic conditions. The syntheses of Ln1 and Ln2 show the influence of the lanthanide contraction on the quaternary Ln/Cu/Sn/S system in ethylenediamine. Compounds 1 – 5 exhibit bandgaps in the range of 2.09–2.48 eV depending on the two different types of clusters in the compounds. Compounds 1 , 3 , and 4 lost their organic components in the temperature range of 110–350 °C by multistep processes.  相似文献   
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The room temperature reaction of Na4Sn2S6 · 5H2O with CoCl2 · 6H2O and 2-(aminomethyl)pyridine (2-AMP) or trans-1,2-diamino-cyclohexane (DACH) leads to crystallization of two compounds with the compositions [Co(2-(aminomethyl)pyridine)3]2 Sn2S6 · 10H2O ( 1 ) and [Co(trans-1,2-diaminocyclohexane)3]2Sn2S6 · 8H2O ( 2 ). In both compounds [Sn2S6]4– anions are present that are charge balanced each by two Co2+ centered complexes. Each of the two CoII cations are sixfold coordinated by six N atoms of three 2-AMP or DACH ligands within slightly distorted octahedra. In compound 1 , the two complexes are linked by one [Sn2S6]4– anion via strong N–H ··· S hydrogen bonds into centrosymmetric charge neutral trimeric units, that are further linked by weak C–H ··· S and N–H ··· S hydrogen bonds into chains that are directed along the a axis. These chains are further joined by N–H ··· O and O–H ··· O hydrogen bonds into a 3D network, with the H2O molecules forming chains along the b axis. The crystal structure of 2 is similar to that of 1 featuring trimeric units which are also linked into chains. Between the chains water molecules are embedded that link the chains into a 3D network. Upon heating 2 in a thermobalance the water and ligand molecules are removed in discrete steps, indicating that compounds with more condensed thiostannate networks will form.  相似文献   
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