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首页> 外文期刊>Angewandte Chemie >Enantioselective Assembly of a Ruthenium(II) Polypyridyl Complex into a Double Helix
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Enantioselective Assembly of a Ruthenium(II) Polypyridyl Complex into a Double Helix

机译:钌(II)聚吡啶配合物对映选择性组装成双螺旋

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摘要

Evolution can increase the complexity of matter by self-organization into helical architectures, the best example being the DNA double helix. One common aspect, apparently shared by most of these architectures, is the presence of covalent bonds within the helix backbone. Here, we report the unprecedented crystal structures of a metal complex that self-organizes into a continuous double helical structure, assembled by non-covalent building blocks. Built up solely by weak stacking interactions, this alternating tread stairs-like double helical assembly mimics the DNA double helix structure. Starting from a racemic mixture in aqueous solution, the ruthenium(II) polypyridyl complex forms two polymorphic structures of a left-handed double helical assembly of only the A-enantiomer. The stacking of the helices is different in both polymorphs: a crossed woodpile structure versus a parallel columnar stacking.
机译:进化可以通过自组织成螺旋结构来增加物质的复杂性,最好的例子是DNA双螺旋结构。这些架构中的大多数显然共享一个共同的方面,即在螺旋骨架中存在共价键。在这里,我们报道了一种由非共价结构单元组装而成的,自组织成连续双螺旋结构的金属络合物的前所未有的晶体结构。这种交替的胎面阶梯状双螺旋装配仅由弱的堆叠相互作用构建而成,模仿了DNA双螺旋结构。从水溶液中的外消旋混合物开始,钌(II)聚吡啶基配合物形成仅由A对映体组成的左手双螺旋组件的两个多态结构。两种多晶型物的螺旋堆积不同:交叉的木桩结构与平行的柱状堆积。

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