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通过氢键实现过渡金属螺旋配合物的多功能、高效且立体选择性自组装。

The versatile, efficient, and stereoselective self-assembly of transition-metal helicates by using hydrogen-bonds.

作者信息

Telfer Shane G, Kuroda Reiko

机构信息

JST ERATO Kuroda Chiromorphology Project, Park Bldg., 4-7-6 Komaba, Meguro-ku, Tokyo, 153-0041, Japan.

出版信息

Chemistry. 2004 Dec 17;11(1):57-68. doi: 10.1002/chem.200400485.

Abstract

A diverse range of dinuclear double-stranded helicates in which the ligand strand is built up by using hydrogen-bonding has been synthesized. The helicates, formulated as [Co(2)(L)(2)(L-H)(2)X(2)], readily self-assemble from a mixture of a suitable pyridine-alcohol compound (L; for example, 6-methylpyridine-2-methanol, 1), and a CoX(2) salt in the presence of base. Nine such helicates have been characterized by X-ray crystallography. For helicates derived from the same pyridine-alcohol precursor, a remarkable regularity was found for both the molecular structure and the crystal packing arrangements, regardless of the nature of the ancillary ligand (X). A notable exception was observed in the solid-state structure of [Co(2)(1)(2)(1-H)(2)(NCS)(2)] for which intermolecular nonbonded contacts between the sulfur atoms (SS=3.21 A) lead to the formation of 1D chains. Helicates derived from (R)-6-methylpyridine-2-methanol (2) are soluble in solvents such as CH(3)CN and CH(2)Cl(2), and their self-assembly could be monitored in solution by (1)H NMR, UV/Vis, and CD titrations. No intermediate complexes were observed to form in a significant concentration at any point throughout these titrations. The global thermodynamic stability constant of [Co(2)(2)(2)(2-H)(2)(NO(3))(2)] was calculated from spectrophotometric data to be logbeta=8.9(8). The stereoisomerism of these helicates was studied in some detail and the self-assembly process was found to be highly stereoselective. The chirality of the ligand precursors can control the absolute configuration of the metal centers and thus the overall helicity of the dinuclear assemblies. Furthermore, the enantiomers of rac-6-methylpyridine-2-methanol (3) undergo a self-recognition process to form exclusively homochiral helicates in which the four pyridine-alcohol units possess the same chirality.

摘要

已经合成了多种双核双链螺旋配合物,其中配体链是通过氢键作用构建而成的。这些螺旋配合物的化学式为[Co(2)(L)(2)(L-H)(2)X(2)],在碱存在的情况下,它们很容易从合适的吡啶醇化合物(L;例如,6-甲基吡啶-2-甲醇,1)和CoX(2)盐的混合物中自组装而成。已经通过X射线晶体学对九种这样的螺旋配合物进行了表征。对于源自相同吡啶醇前体的螺旋配合物,无论辅助配体(X)的性质如何,在分子结构和晶体堆积排列方面都发现了显著的规律性。在[Co(2)(1)(2)(1-H)(2)(NCS)(2)]的固态结构中观察到一个显著的例外,其中硫原子之间的分子间非键接触(SS = 3.21 Å)导致形成一维链。源自(R)-6-甲基吡啶-2-甲醇(2)的螺旋配合物可溶于CH(3)CN和CH(2)Cl(2)等溶剂中,并且它们的自组装过程可以通过(1)H NMR、UV/Vis和CD滴定在溶液中进行监测。在整个这些滴定过程中的任何时候都没有观察到有显著浓度的中间配合物形成。根据分光光度数据计算出[Co(2)(2)(2)(2-H)(2)(NO(3))(2)]的整体热力学稳定性常数为logbeta = 8.9(8)。对这些螺旋配合物的立体异构现象进行了较为详细的研究,发现自组装过程具有高度的立体选择性。配体前体的手性可以控制金属中心的绝对构型,从而控制双核组装体的整体螺旋度。此外,rac-6-甲基吡啶-2-甲醇(3)的对映体经历自识别过程,仅形成同手性的螺旋配合物,其中四个吡啶醇单元具有相同的手性。

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