Vernier template synthesis of molecular knots

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-pyrid...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2022-03, Vol.375 (6584), p.1035-1041
Hauptverfasser: Ashbridge, Zoe, Kreidt, Elisabeth, Pirvu, Lucian, Schaufelberger, Fredrik, Stenlid, Joakim Halldin, Abild-Pedersen, Frank, Leigh, David A
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Sprache:eng
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Zusammenfassung: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.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.abm9247