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配位球相互作用驱动具有低对称性配体的杂配体钯(II)笼中的异构体选择。

Coordination sphere interactions drive isomer selection in heteroleptic Pd(ii) cages with low-symmetry ligands.

作者信息

Molinska Paulina, Male Louise, Lewis James E M

机构信息

School of Chemistry, University of Birmingham Molecular Sciences Building, Edgbaston Birmingham B15 2TT UK

出版信息

Chem Sci. 2025 Sep 8. doi: 10.1039/d5sc04881h.

Abstract

The targeted formation of low-symmetry coordination cages represents a significant design challenge but offers the potential to engineer bespoke molecular hosts with precision. In this work, we have combined the design principles of geometric complementarity and coordination sphere engineering to direct the site- and orientation-selective self-assembly of heteroleptic PdL L -type coordination cages from low-symmetry ligands. The effects of different combinations of heterocyclic donors and their locations within the cage structures on isomer distributions were studied, providing insights on shifts in the balance between non-covalent interactions in the first and second coordination spheres of the cages. For cages with one low-symmetry ligand, switching between selective formation of - (up to 77%) or -isomers (up to 76%) was achieved simply through minor structural changes (swapping a hydrogen atom for a fluorine) or changing the location of heterocycles within the cage structure between the different ligand scaffolds. Furthermore, the selective (up to ∼62%) assembly of particular isomers of heteroleptic cages formed from two low-symmetry ligand scaffolds was demonstrated and rationalised.

摘要

低对称配位笼的定向形成是一项重大的设计挑战,但也为精确设计定制分子主体提供了潜力。在这项工作中,我们结合了几何互补性和配位球工程的设计原则,以指导由低对称配体进行杂配体PdL L型配位笼的位点和取向选择性自组装。研究了杂环供体的不同组合及其在笼结构中的位置对异构体分布的影响,从而深入了解了笼的第一和第二配位球中非共价相互作用平衡的变化。对于含有一个低对称配体的笼,只需通过微小的结构变化(将氢原子换成氟原子)或改变笼结构内杂环在不同配体支架之间的位置,就能实现 - 异构体(高达77%)或 - 异构体(高达76%)的选择性形成之间的切换。此外,还展示并阐释了由两个低对称配体支架形成的杂配体笼特定异构体的选择性组装(高达约62%)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5601/12415893/ba7f58157157/d5sc04881h-f1.jpg

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