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基于小分子平面构筑基元自组装的硫属键诱导的双螺旋

Chalcogen-Bond-Induced Double Helix Based on Self-Assembly of a Small Planar Building Block.

机构信息

Fakultät für Chemie, Universität Duisburg-Essen, Universitätsstr. 7, 45117, Essen, Germany.

出版信息

Angew Chem Int Ed Engl. 2023 Jul 17;62(29):e202304202. doi: 10.1002/anie.202304202. Epub 2023 Jun 2.

Abstract

As a rule, helical structures at the molecular level are formed by non-planar units. This makes the design of helices, starting from planar building blocks via self-assembly, even more fascinating. Until now, however, this has only been achieved in rare cases, where hydrogen and halogen bonds were involved. Here, we show that the carbonyl-tellurium interaction motif is suitable to assemble even small planar units into helical structures in solid phase. We found two different types of helices: both single and double helices, depending on the substitution pattern. In the double helix, the strands are connected by additional Te⋅⋅⋅Te chalcogen bonds. In the case of the single helix, a spontaneous enantiomeric resolution occurs in the crystal. This underlines the potential of the carbonyl-tellurium chalcogen bond to generate complex three-dimensional patterns.

摘要

通常情况下,分子水平上的螺旋结构是由非平面单元形成的。这使得从平面构建块通过自组装来设计螺旋结构更加迷人。然而,到目前为止,这种情况只在少数情况下实现过,其中涉及氢键和卤键。在这里,我们表明羰基-碲相互作用基序适合将即使是小的平面单元组装成固态中的螺旋结构。我们发现了两种不同类型的螺旋:单螺旋和双螺旋,这取决于取代模式。在双螺旋中,链通过额外的 Te⋅⋅⋅Te 类键连接。在单螺旋的情况下,手性在晶体中自发拆分。这强调了羰基-碲类键生成复杂三维图案的潜力。

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