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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Polymeric silver(I) complexes with pyridyl dithioether ligands: experimental and theoretical investigations on the coordination properties of the ligands
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Polymeric silver(I) complexes with pyridyl dithioether ligands: experimental and theoretical investigations on the coordination properties of the ligands

机译:吡啶二硫醚配体的聚合银(I)配合物:配体配位性质的实验和理论研究

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摘要

The reactions of four flexible tetradentate ligands, 1,3-bis(2-pyridylthio)propane (L~1), 1,4-bis(2-pyridylthio)butane (L~2), 1,5-bis(2-pyridylthio)pentane (L~3) and 1,6-bis(2-pyridylthio)hexane (L4) with AgX (X=BF_4~-, ClO_4~-, PF_6~-, or CF_3SO_3~-) lead to the formation of seven new complexes: [AgL~1(BF_4)]_2(1), {[AgL~2](ClO_4)}_2), {[AgL_2(CH_3CN)](PF_6)}_∞3), {[AgL_3](BF_4)(CHCl_3)}_2~4), {[AgL_3(CF_3SO_3)](CH_3OH)0.5}_5), {[Ag_2L_4~2](BF__4)_2}_6), and {[AgL_4](PF_6)}_∞(7), which have been characterized by elemental analyses, IR spectroscopy, and X-ray crystallography. Single-crystal X-ray analyses show that complexes 1 and 4 possess dinuclear macrometallacyclic structures, and complexes 2, 3, and 5~7 take chain structures. In all the complexes, the nitrogen atoms of ligands preferentially coordinate to silver atoms to form normal coordination bonds, while the sulfur atoms only show weak interactions with silver atoms and the intermolecular AgS weak contacts connect the low-dimensional complexes into high-dimensional supramolecular networks. Additional weak interactions, such as π-π F…F weak interactions, Ag…O contacts or C-H…O hydrogen bonds, also help to stabilize the crystal structures. It was found that the parity of the -(CH_2)_n-spacers (n=3-6) affect the orientation of the two terminal pyridyl rings, thereby significantly influence the framework formations of these complexes. The coordination features of ligands and their conformation changes between free and coordination states have been investigated by DFT calculations.
机译:四个柔性四齿配体,1,3-双(2-吡啶硫基)丙烷(L〜1),1,4-双(2-吡啶硫基)丁烷(L〜2),1,5-双(2-吡啶硫基)戊烷(L〜3)和1,6-双(2-吡啶硫基)己烷(L4)与AgX(X = BF_4〜-,ClO_4〜-,PF_6〜-或CF_3SO_3〜-)导致形成七个新的配合物:[AgL〜1(BF_4)] _ 2(1),{[AgL〜2](ClO_4)} _ 2),{[AgL_2(CH_3CN)](PF_6)} _∞3),{[AgL_3] (BF_4)(CHCl_3)} _ 2〜4),{[AgL_3(CF_3SO_3)](CH_3OH)0.5} _5),{[Ag_2L_4〜2](BF__4)_2} _6)和{[AgL_4](PF_6)} _∞(7),已通过元素分析,红外光谱和X射线晶体学进行了表征。 X射线单晶分析表明,配合物1和4具有双核大金属环结构,配合物2、3和5〜7具有链结构。在所有的配合物中,配体的氮原子优先与银原子配位以形成正常的配位键,而硫原子仅显示与银原子的弱相互作用,并且分子间的AgS弱接触将低维的配合物连接成高维的超分子网络。其他弱相互作用,例如π-πF…F弱相互作用,Ag…O接触或C-H…O氢键,也有助于稳定晶体结构。发现-(CH_2)_n-间隔基(n = 3-6)的奇偶性影响两个末端吡啶基环的取向,从而显着影响这些配合物的骨架形成。通过DFT计算研究了配体的配位特征及其在自由态和配位态之间的构象变化。

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