首页> 美国卫生研究院文献>Acta Crystallographica Section E: Crystallographic Communications >Silver(I) nitrate complexes of three tetra­kis-thio­ether-substituted pyrazine ligands: metal–organic chain network and framework structures
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Silver(I) nitrate complexes of three tetra­kis-thio­ether-substituted pyrazine ligands: metal–organic chain network and framework structures

机译:三种四-硫代醚醚取代的吡嗪配体的硝酸银(I)配合物:金属-有机链网络和框架结构

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摘要

The reaction of the ligand 2,3,5,6-tetra­kis­[(methyl­sulfanyl)­meth­yl]pyrazine (>L1) with silver(I) nitrate led to {[Ag(C12H20N2S4)](NO3)}n, (I), catena-poly[[silver(I)-μ-2,3,5,6-tetra­kis­[(methyl­sulfan­yl)meth­yl]pyrazine] nitrate], a compound with a metal–organic chain structure. The asymmetric unit is composed of two half ligands, located about inversion centres, with one ligand coordinating to the silver atoms in a bis-tridentate manner and the other in a bis-bidentate manner. The charge on the metal atom is compensated for by a free nitrate anion. Hence, the silver atom has a fivefold S3N2 coordination sphere. The reaction of the ligand 2,3,5,6-tetra­kis­[(phenyl­sulfanyl)­meth­yl]pyrazine (>L2) with silver(I) nitrate, led to [Ag2(NO3)2(C32H28N2S4)]n, (II), poly[di-μ-nitrato-bis­{μ-2,3,5,6-tetra­kis­[(phenyl­sulfan­yl)meth­yl]pyrazine}disilver], a compound with a metal–organic network structure. The asymmetric unit is composed of half a ligand, located about an inversion centre, that coordinates to the silver atoms in a bis-tridentate manner. The nitrate anion coordinates to the silver atom in a bidentate/monodentate manner, bridging the silver atoms, which therefore have a sixfold S2NO3 coordination sphere. The reaction of the ligand 2,3,5,6-tetra­kis­[(pyridin-2-yl­sulfanyl)­meth­yl]pyrazine (>L3) with silver(I) nitrate led to [Ag3(NO3)3(C28H24N6S4)]n, (III), poly[trinitrato{μ 6-2,3,5,6-tetra­kis[(pyri­din-2-ylsulfan­yl)meth­yl]pyrazine}­trisilver(I)], a compound with a metal–organic framework structure. The asymmetric unit is composed of half a ligand, located about an inversion centre, that coordinates to the silver atoms in a bis-tridentate manner. One pyridine N atom bridges the monomeric units, so forming a chain structure. Two nitrate O atoms also coordinate to this silver atom, hence it has a sixfold S2N2O2 coordination sphere. The chains are linked via a second silver atom, located on a twofold rotation axis, coordinated by the second pyridine N atom. A second nitrate anion, also lying about the twofold rotation axis, coordinates to this silver atom via an Ag—O bond, hence this second silver atom has a threefold N2O coordination sphere. In the crystal of (I), the nitrate anion plays an essential role in forming C—H⋯O hydrogen bonds that link the metal–organic chains to form a three-dimensional supra­molecular structure. In the crystal of (II), the metal–organic networks (lying parallel to the bc plane) stack up the a-axis direction but there are no significant inter­molecular inter­actions present between the layers. In the crystal of (III), there are a number of C—H⋯O hydrogen bonds present within the metal–organic framework. The role of the nitrate anion in the formation of the coordination polymers is also examined.
机译:配体2,3,5,6-四[[甲基硫烷基]甲基]吡嗪(> L1 )与硝酸银(I)的反应生成{[Ag(C12H20N2S4)](NO3)} n,(I),链状聚[[银(I)-μ-2,3,5,6-四[[甲基硫烷基]甲基]吡嗪]硝酸盐],一种具有金属-有机链结构的化合物。不对称单元由位于反转中心附近的两个半配体组成,一个配体以双三齿方式与银原子配位,另一个以双齿方式配位。金属原子上的电荷由游离硝酸根阴离子补偿。因此,银原子具有5倍的S3N2配位球。配体2,3,5,6-四[[苯基硫烷基]甲基]吡嗪(> L2 )与硝酸银(I)的反应生成[Ag2(NO3)2(C32H28N2S4)] n,(II),聚[di-μ-硝基-双{μ-2,3,5,6-四[[苯基硫烷基]甲基]吡嗪}二银],一种具有金属-有机网络结构的化合物。不对称单元由位于反转中心附近的配体的一半组成,该配体以双三齿的方式与银原子配位。硝酸根阴离子以二齿/单齿方式与银原子配位,桥接银原子,因此具有六倍的S 2 NO 3 配位球。配体2,3,5,6-四[[吡啶-2-基硫烷基]甲基]吡嗪(> L3 )与硝酸银(I)的反应生成[Ag 3 < / sub>(NO 3 3 (C 28 H 24 N 6 S 4 )] n ,(III),聚[trinitrato {μ 6 -2,3,5,6-四[[吡啶-2-基硫烷基]甲基]吡嗪}三银(I)],一种具有金属-有机骨架结构的化合物。不对称单元由位于反转中心附近的配体的一半组成,该配体以双三齿的方式与银原子配位。一个吡啶N原子桥接单体单元,从而形成链结构。两个硝酸盐O原子也与该银原子配位,因此它具有六倍的S 2 N 2 O 2 配位球。链通过位于第二旋转轴上的第二银原子连接,该第二原子由第二吡啶N原子配位。同样位于双倍旋转轴附近的第二个硝酸根阴离子也通过Ag-O键与该银原子配位,因此该第二个银原子具有三倍的N <2> O配位球。在(I)的晶体中,硝酸根阴离子在形成连接金属有机链以形成三维超分子结构的CH⋯O氢键方面起着至关重要的作用。在(II)的晶体中,金属有机网络(平行于bc平面)沿a轴方向堆叠,但是在各层之间不存在明显的分子间相互作用。在(III)的晶体中,金属-有机骨架内存在许多CHHO氢键。还检查了硝酸根阴离子在配位聚合物形成中的作用。

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