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Journal ArticleDOI

Dynamic Self-Assembly of an M3L6 Molecular Triangle and an M4L8 Tetrahedron from Naked PdII Ions and Bis(3-pyridyl)-Substituted Arenes

TLDR
The pyridine-appended nonchelating bidentate ligands 1 and 2 were complexed with a naked Pd(II) ion for the construction of molecular cage compounds to produce novel structures that are combinations of the M(n)L( n) type frameworks.
Abstract
The pyridine-appended nonchelating bidentate ligands 1,4-bis(3-pyridyl)benzene (1) and 4,4'-bis(3-pyridyl) biphenyl (2) were complexed with a naked Pd(II) ion for the construction of molecular cage compounds. Prior to these experiments, the complexation of the ligands with cis-[Pd(en)(NO3)2] was also examined, because self-assemblies from the cis-protected Pd(II) ion were expected to be simple motifs that constitute the assemblies from naked Pd(II) ion. The structures of the self-assembled compounds resulting from 1 and [Pd(en)(NO3)2] depended on the solvent employed. In aqueous solution, an M2L2 trenchlike compound was obtained. In dimethyl sulfoxide, however, a mixture of the M2L2 trench and an M3L3 macrocycle was found in equilibrium, the dynamic nature of which was confirmed by the concentration-dependent nature of the species. At higher concentration, an M4L4 macrocycle was mostly observed. The complexation of 1 with naked Pd(II) ions was expected to produce novel structures that are combinations of the M(n)L(n) type frameworks. A peculiar tetrahedral M4L8 assembly was obtained quantitatively from 1 and Pd(NO3)2, rather than the smallest possible M3L6 double-walled triangle. Interestingly, the use of Pd(CF3SO3)2 resulted in the sole formation of the latter structure. Thus, the anion is important as a template in the formation of these assemblies. Ligand 2, which contains an extra p-phenylene unit compared to 1, behaved in a similar manner when treated with [Pd(en)(NO3)2], but showed subtle differences with naked Pd(II) ions. With Pd(NO3)2, 2 gave mostly a tetrahedron along with a double-walled triangle. With Pd(CF3SO3)2, this longer ligand formed a double-walled triangle with a negligible amount of tetrahedra. A single discrete assembly of a perfect tetrahedron was obtained from 2 and Pd(II) ions by choosing p-tosylate as a counterion.

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Design and synthesis of metal-organic frameworks using metal-organic polyhedra as supermolecular building blocks.

TL;DR: This critical review highlights supermolecular building blocks (SBBs) in the context of their impact upon the design, synthesis, and structure of metal-organic materials (MOMs) by highlighting how the large size and high symmetry of such SBBs can afford improved control over the topology of the resulting MOM and a new level of scale to the resulting framework.
Journal ArticleDOI

Trinuclear metallacycles: metallatriangles and much more.

TL;DR: The first example of a rationally designed metallacycle, the molecular square [{Pd(en)(μ-4,4′-bipy)}4](NO3)8, was described by self-assembly of the cis-protected square-planar Pd(II) precursor with two adjacent labile ligands.
Journal ArticleDOI

Self-assembled coordination complexes from various palladium(II) components and bidentate or polydentate ligands

TL;DR: In this article, the authors describe self-assemblies formed by the combination of a variety of palladium(II) components and ligands ranging from bi-to polydentate.
Journal ArticleDOI

Selective Host–Guest Interactions of a Transformable Coordination Capsule/Tube with Fullerenes

TL;DR: An M2 L4 coordination capsule or an M2L2 coordination tube was selectively formed by the combination of Hg(II) hinges and bent bispyridine ligands and exhibit different host-guest interaction behavior.
References
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