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Isomerism in Copper(I)-Induced Folding of Homoditopic Macrocyclic Ligands with Bis(dithiadiimine) Donor Sets

机译:双(二硫代二亚胺)供体在铜(I)诱导的同位大环配体折叠中的异构

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The structural properties of the dicopper(I) compounds of the two large macrocyclic Schiff base ligands para-222 and meta-222 with two dithiadiimine coordination sites, where the two sites are linked by two para- or two meta-xylylene spacer groups and all bridges between the donors of each site are ethylene groups (32- and 30-membered macrocycles for the para- or meta-xylylen-bridged para-222 and meta-222 species, respectively) are studied, in solution and by computer modeling. Solid-state structural data have been reported elsewhere. The coordination of the 32-membered macrocycle para-222 to two copper(I) centers leads to a helical figure-of-eight-shaped structure. Two diastereomeric pairs of enantiomers have been observed for this type of compound in solution. The crystallized form is more stable than the second isomer by approximately 6-10 kJ/mol (solution-NMR spectroscopy and force-field calculations). Both experimentally detected isomers are more than 15 kJ/mol more stable than the other five possible configurations (force-field calculations). For the meta-222 macrocycle (30-membered ring) an achiral structure has been observed in the solid while two of the 21 possible isomers have been detected in solution (3 is to 1, NMR spectroscopy). The computed structures and isomer distributions (force-field calculations) are compared with the solid-state structures and with observed isomer distributions from NMR experiments, and dynamic processes are analyzed in detail.
机译:具有两个二噻二亚胺配位点的两个大型大环席夫碱配体para-222和meta-222的dicopper(I)化合物的结构特性,其中两个位点通过两个对-或两个间-亚二甲苯基间隔基团和所有在每个位点的供体之间的桥是亚乙基(对-或间-二甲苯基桥联的对-222和间-222物种分别为32和30元大环),在溶液中和通过计算机建模进行了研究。固态结构数据已在其他地方报道。 32个成员的大环对位222与两个铜(I)中心的配位导致螺旋形的八字形结构。对于溶液中的这种类型的化合物,已经观察到两个对映异构体对映体。结晶形式比第二种异构体稳定约6-10 kJ / mol(溶液NMR光谱和力场计算)。实验检测到的两种异构体均比其他五种可能的构型(力场计算)稳定15 kJ / mol以上。对于meta-222大环(30元环),在固体中观察到非手性结构,而在溶液中检测到21种可能的异构体中的两种(3对1,NMR光谱)。将计算的结构和异构体分布(力场计算)与固态结构和NMR实验中观察到的异构体分布进行比较,并详细分析了动态过程。

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