Dysprosium-carboxylate nanomeshes with tunable cavity size and assembly motif through ionic interactions

We report the design of dysprosium directed metallo-supramolecular architectures on a pristine Cu(111) surface. By an appropriate selection of the ditopic molecular linkers equipped with terminal carboxylic groups (TPA, PDA and TDA species), we create reticular and mononuclear metal-organic nanomesh...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2016-01, Vol.52 (75), p.11227-1123
Hauptverfasser: Cirera, B, or evi, L, Otero, R, Gallego, J. M, Bonifazi, D, Miranda, R, Ecija, D
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Sprache:eng
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Zusammenfassung:We report the design of dysprosium directed metallo-supramolecular architectures on a pristine Cu(111) surface. By an appropriate selection of the ditopic molecular linkers equipped with terminal carboxylic groups (TPA, PDA and TDA species), we create reticular and mononuclear metal-organic nanomeshes of tunable internodal distance, which are stabilized by eight-fold Dy O interactions. A thermal annealing treatment for the reticular Dy:TDA architecture gives rise to an unprecedented quasi-hexagonal nanostructure based on dinuclear Dy clusters, exhibiting a unique six-fold Dy O bonding motif. All metallo-supramolecular architectures are stable at room temperature. Our results open new avenues for the engineering of supramolecular architectures on surfaces incorporating f-block elements forming thermally robust nanoarchitectures through ionic bonds. Tunability of cavity size and assembly motif of dysprosium-directed nanomeshes through ionic interactions.
ISSN:1359-7345
1364-548X
DOI:10.1039/c6cc04874a