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Chiral tether-mediated stabilization and helix-sense control of complementary metallo-double helices

机译:手性束缚介导的稳定和互补双金属螺旋的螺旋感控制。

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摘要

A series of novel PtII-linked double helices were prepared by inter- or intrastrand ligand-exchange reactions of the complementary duplexes composed of chiral or achiral amidine dimer and achiral carboxylic acid dimer strands joined by trans-PtII–acetylide complexes with PPh3 ligands using chiral and achiral chelating diphosphines. The structure and stability of the PtII-linked double helices were highly dependent on the diphosphine structures. An interstrand ligand exchange took place with chiral and achiral 1,3-diphosphine-based ligands, resulting in trans-PtII-bridged double helices, whose helical structures were quite stable even in dimethyl sulfoxide (DMSO) due to the interstrand cross-link, whereas a 1,2-diphosphine-based ligand produced non-cross-linked cis-PtII-linked duplexes, resulting from an intrastrand ligand-exchange that readily dissociated into single strands in DMSO. When enantiopure 1,3-diphosphine-based ligands were used, the resulting trans-PtII-bridged double helices adopted a preferred-handed helical sense biased by the chirality of the bridged diphosphines. Interestingly, the interstrand ligand exchange with racemic 1,3-diphosphine toward an optically-active PtII-linked duplex, composed of chiral amidine and achiral carboxylic acid strands, was found to proceed in a diastereoselective manner, thus forming complete homochiral trans-PtII-bridged double helices via a unique chiral self-sorting.
机译:通过手性或非手性am二聚体与反式-Pt连接的非手性羧酸二聚体链组成的互补双链的链间或链内配体交换反应,制备了一系列新型的Pt II 连接双螺旋。使用手性和非手性螯合二膦类化合物将 II -乙炔化物与PPh3配体复合。 Pt II 连接的双螺旋的结构和稳定性高度依赖于二膦的结构。用基于手性和非手性的1,3-二膦基的配体进行链间配体交换,生成反式-Pt II 桥联的双螺旋,即使在二甲基亚砜(DMSO)中,其螺旋结构也相当稳定由于链间的交联,而基于1,2-二膦基的配体产生了非交联的顺式-Pt II 连接的双链体,这是由于链内的配体交换容易分解成DMSO中的单链。当使用对映体纯的1,3-二膦基配体时,所得的反式-Pt II 桥联的双螺旋具有优先的螺旋感,该螺旋感由于桥联的二膦的手性而有偏差。有趣的是,发现由外消旋1,3-二膦向由手性am和非手性羧酸链组成的旋光性Pt II 连接的双链体的链间配体交换以非对映选择性方式进行,从而通过独特的手性自分选形成完整的同手性反式Pt II 桥联双螺旋。

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