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游标模板法合成分子纽结。

Vernier template synthesis of molecular knots.

机构信息

Department of Chemistry, University of Manchester, Oxford Road, Manchester M13 9PL, UK.

SUNCAT Center for Interface Science and Catalysis, Department of Chemical Engineering, Stanford University, Stanford, CA 94305, USA.

出版信息

Science. 2022 Mar 4;375(6584):1035-1041. doi: 10.1126/science.abm9247. Epub 2022 Mar 3.

Abstract

Molecular knots are often prepared using metal helicates to cross the strands. We found that coordinatively mismatching oligodentate ligands and metal ions provides a more effective way to synthesize larger knots using Vernier templating. Strands composed of different numbers of tridentate 2,6-pyridinedicarboxamide groups fold around nine-coordinate lanthanide (III) ions to generate strand-entangled complexes with the lowest common multiple of coordination sites for the ligand strands and metal ions. Ring-closing olefin metathesis then completes the knots. A 3:2 (ditopic strand:metal) Vernier assembly produces +3#+3 and -3#-3 granny knots. Vernier complexes of 3:4 (tetratopic strand:metal) stoichiometry selectively form a 378-atom-long trefoil-of-trefoils triskelion knot with 12 alternating strand crossings or, by using opposing stereochemistry at the terminus of the strand, an inverted-core triskelion knot with six alternating and six nonalternating strand crossings.

摘要

分子纽结通常使用金属螺旋体来交叉链。我们发现,配位不匹配的寡齿配体和金属离子提供了一种更有效的方法,通过 Vernier 模板合成更大的纽结。由不同数量的三齿 2,6-吡啶二甲酰胺基团组成的链围绕九配位镧系(III)离子折叠,生成具有配体链和金属离子的最低公共倍数的链缠结复合物。然后闭环烯烃复分解完成纽结。3:2(双功能链:金属) Vernier 组装产生 +3#+3 和-3#-3 婆婆纽结。3:4(四齿链:金属)化学计量 Vernier 配合物选择性地形成具有 12 个交替链交叉的 378 个原子长三叶结三臂纽结,或者通过在链末端使用相反的立体化学,形成具有六个交替和六个非交替链交叉的倒核三叶结三臂纽结。

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