Morphological Control of Heteroleptic cis- and trans-Pd2L2L'2 Cages

Control over the integrative self-sorting of metallo-supramolecular assemblies opens up possibilities for introducing increased complexity and function into a single self-assembled architecture. Herein, the relationship between the geometry of three ligand components and morphology of three self-sor...

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Veröffentlicht in:Angewandte Chemie International Edition 2017-07, Vol.56 (28), p.8285
Hauptverfasser: Bloch, Witold M, Holstein, Julian J, Hiller, Wolf, Clever, Guido H
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Hiller, Wolf
Clever, Guido H
description Control over the integrative self-sorting of metallo-supramolecular assemblies opens up possibilities for introducing increased complexity and function into a single self-assembled architecture. Herein, the relationship between the geometry of three ligand components and morphology of three self-sorted heteroleptic [Pd2L2L'2]4+ cages is examined. Pd-mediated assembly of two bis-monodentate pyridyl ligands with native bite angles of 75° and 120° affords a cis-[Pd2L2L'2]4+ cage while the same reaction with two ligands with bite angles of 75° and 60° gives an unprecedented, self-penetrating structural motif; a trans-[Pd2(anti-L)2L'2]4+ heteroleptic cage with a "doubly bridged figure eight" topology. Each heteroleptic assembly can be formed by cage-to-cage conversion of the homoleptic precursors and morphological control of [Pd2L2L'2] cages is achieved by selective ligand displacement transformations in a system of three ligands and at least six possible cage products.
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source Wiley Online Library Journals Frontfile Complete
subjects Angles (geometry)
Assembly
Cages
Ligands
Mathematical morphology
Metallography
Morphology
Topology
title Morphological Control of Heteroleptic cis- and trans-Pd2L2L'2 Cages
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