首页> 外文OA文献 >Symmetry in Recognition of Supramolecular Synthons–Competition between Hydrogen Bonding and Coordination Bond in Multinuclear CuII–4f Complexes with Bicompartmental Schiff Base Ligand
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Symmetry in Recognition of Supramolecular Synthons–Competition between Hydrogen Bonding and Coordination Bond in Multinuclear CuII–4f Complexes with Bicompartmental Schiff Base Ligand

机译:对称识别超分子合成酮 - 氢铬粘合剂与双核碱配合物中氢粘结与配位键的竞争

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摘要

Classic Cu–O coordination bonds in 1 or elongated semi-coordination ones in 2 and 3 were applied to construct CuII–4f complexes composed of trinuclear subunits linked through μ-NO3− ions with formulae given as [Cu2Tm(H2tehy)2]2(NO3)6·H2O, (1), {[Cu2Ho(H2tehy)2(NO3)2][Cu2Ho(H2tehy)2(H2O)2]}(NO3)4·2H2O, (2), and {[Cu2Er(H2tehy)2(H2O)]2([Cu2Er(H2tehy)2(NO3)]2}(NO3)10·2H2O·4CH3OH, (3), where H2tehy = C19H20N2O4 is a tetrahydroxy Schiff base ligand. Topological analysis showed that the same characteristic motif of coordination accompanied by hydrogen bonds involving the uncoordinated nitrate oxygen atom and ligand’s phenoxy O atoms is responsible for linking trinuclear subunits into a hexanuclear one as well as for bridging the hexanuclear coordination units in 3 into a 1D supramolecular polymer, with the Cu–O distance being 3.19(1) Å, much longer than the limit of a semi-coordination bond (3.07 Å). The Cambridge Structural Database was used to discuss issues of crystallographic criteria (distance and angular preferences) for the assessment of the stabilizing or destabilizing effect of hydrogen bonding on coordination. The presented results show that the symmetrically repeated arrangement of molecules may provide a useful tool for identifying higher order non-covalently bonded supramolecular aggregates. The complexes 1–3 have been characterized by X-ray diffraction, FTIR, and thermal analysis. The magnetic studies indicated the ferromagnetic interaction between CuII and HoIII ions.
机译:在1或伸长半协调那些经典的Cu-O配位键在2和3施加到构建通过μ-NO3-离子与给定为式联三核亚基组成CUII-4F配合物[Cu2Tm(H2tehy)2] 2( NO3)6·H 2 O,(1),{[Cu2Ho(H2tehy)2(NO3)2] [Cu2Ho(H2tehy)2(H2O)2]}(NO3)4·2H2O,(2),和{[Cu2Er( H2tehy)2(H2O)] 2([Cu2Er(H2tehy)2(NO3)] 2}(NO3)10·2H2O·4CH3OH,(3),其中H2tehy = C19H20N2O4是一个四羟基席夫碱配体。拓扑分析表明,伴随涉及未经协调的硝酸氧原子的氢键和配位体的苯氧基O原子协调的相同的特征基序是负责三核亚基连接成一六核一个以及用于桥接六核协调单元3成一维超分子聚合物,与铜-O距离为3.19(1)埃,远长于半配位键(3.07埃)。极限剑桥结构数据库被用来讨论的结晶条件的问题(d istance和角偏好)为氢键对协调的稳定或去稳定作用的评估。所呈现的结果表明,分子的对称重复布置可以用于识别高阶非共价键合的超分子聚集提供一个有用的工具。络合物1-3已通过X射线衍射,红外光谱,和热分析。磁性研究表明CUII和HoIII离子之间的相互作用强磁性。

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