首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Conformational analysis of macrocyclic ether ligands .1. 1,4,7,10-tetraoxacyclododecane and 1,4,7,10-tetrathiacyclododecane
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Conformational analysis of macrocyclic ether ligands .1. 1,4,7,10-tetraoxacyclododecane and 1,4,7,10-tetrathiacyclododecane

机译:大环醚配体的构象分析.1。 1,4,7,10-四氧杂环十二烷和1,4,7,10-四硫杂环十二烷

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Crystallographic results retrieved from the Cambridge Structural Database (CSD) have been used to perform systematic conformational analyses of both free and metal-coordinated unsaturated 12-membered oxa and thia macrocycles. Conformational classifications established using symmetry-modified Jarvis-Patrick clustering are visualized in conformational space by principal component analysis (PCA) plots. These show that the relationship between cluster populations and relative molecular mechanics energies is modified by the coordination requirements of a metal ion. With oxa donors the [3333] conformer (oxygen in edge positions) predominates for metal-coordinated macrocycles, with the donor atoms in a square-planar arrangement, whilst the [48] conformer occurs bound in a cis-octahedral fashion to metal ions and the [66] conformer does not bind in an endo-dentate manner at all. The [3333] and [66] conformers are both common for free ligands, reflecting their similar molecular mechanics energies; the conformation is often determined by the hydrogen-bonding network. There are few thia examples: it is found that conformers with low molecular mechanics energies are unsuited to metal coordination and substantial reorganization is necessary for chelation. The differences in behaviour of oxa and thia macrocycles may be rationalized in terms of differing torsion-angle preferences for CXCC and XCCX units (X = O, S).
机译:从剑桥结构数据库(CSD)检索到的晶体学结果已用于对自由和金属配位的不饱和12元oxa和thia大环进行系统构象分析。使用主成分分析(PCA)图在构象空间中可视化使用对称修饰的Jarvis-Patrick聚类建立的构象分类。这些表明,簇离子与相对分子力学能之间的关系被金属离子的配位要求所改变。对于氧杂给体,[3333]构象异构体(边缘位置的氧)主要用于金属配位的大环,施主原子呈方形排列,而[48]构象异构体则以顺八面体的形式与金属离子和金属离子结合。 [66]构象异构体根本不以内齿的方式结合。 [3333]和[66]构象异构体对于游离配体而言都是常见的,反映了它们相似的分子力学能量。构象通常由氢键网络决定。仅有很少的例子:发现具有低分子机械能的构象异构体不适合金属配位,并且螯合需要大量的重组。可以根据CXCC和XCCX单位的不同扭转角首选项(X = O,S)合理地解释oxa和thia大环的行为差异。

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