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Exploiting Supramolecular Interactions to Control Isomer Distributions in Reduced-Symmetry [Pd2L4]4+ Cages.
Vasdev, Roan A S; Preston, Dan; Casey-Stevens, Caitlin A; Martí-Centelles, Vicente; Lusby, Paul J; Garden, Anna L; Crowley, James D.
Afiliação
  • Vasdev RAS; Department of Chemistry, University of Otago, P.O. Box 56, Dunedin 9054, New Zealand.
  • Preston D; MacDiarmid Institute for Advanced Materials and Nanotechnology, Wellington 6012, New Zealand.
  • Casey-Stevens CA; Department of Chemistry, University of Otago, P.O. Box 56, Dunedin 9054, New Zealand.
  • Martí-Centelles V; MacDiarmid Institute for Advanced Materials and Nanotechnology, Wellington 6012, New Zealand.
  • Lusby PJ; Department of Chemistry, University of Otago, P.O. Box 56, Dunedin 9054, New Zealand.
  • Garden AL; MacDiarmid Institute for Advanced Materials and Nanotechnology, Wellington 6012, New Zealand.
  • Crowley JD; EaStCHEM School of Chemistry, University of Edinburgh, Joseph Black Building, David Brewster Road, Edinburgh EH9 3FJ, Scotland.
Inorg Chem ; 62(5): 1833-1844, 2023 Feb 06.
Article em En | MEDLINE | ID: mdl-35604785
ABSTRACT
High-symmetry metallosupramolecular architectures (MSAs) have been exploited for a range of applications including molecular recognition, catalysis, and drug delivery. Recently, there have been increasing efforts to enhance those applications by generating reduced-symmetry MSAs. Here we report our attempts to use supramolecular (dispersion and hydrogen-bonding) forces and solvophobic effects to generate isomerically pure [Pd2(L)4]4+ cage architectures from a family of new reduced-symmetry ditopic tripyridyl ligands. The reduced-symmetry tripyridyl ligands featured either solvophilic polyether chains, solvophobic alkyl chains, or amino substituents. We show using NMR spectroscopy, high-performance liquid chromatography, X-ray diffraction data, and density functional theory calculations that the combination of dispersion forces and solvophobic effects does not provide any control of the [Pd2(L)4]4+ isomer distribution with mixtures of all four cage isomers (HHHH, HHHT, cis-HHTT, or trans-HTHT, where H = head and T = tail) obtained in each case. More control was obtained by exploiting hydrogen-bonding interactions between amino units. While the cage assembly with a 3-amino-substituted tripyridyl ligand leads to a mixture of all four possible isomers, the related 2-amino-substituted tripyridyl ligand generated a cis-HHTT cage architecture. Formation of the cis-HHTT [Pd2(L)4]4+ cage was confirmed using NMR studies and X-ray crystallography.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article