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. 2009 Sep 2;131(34):12028-9.
doi: 10.1021/ja903330j.

Stoichiometric control of multiple different tectons in coordination-driven self-assembly: preparation of fused metallacyclic polygons

Affiliations

Stoichiometric control of multiple different tectons in coordination-driven self-assembly: preparation of fused metallacyclic polygons

Junseong Lee et al. J Am Chem Soc. .

Abstract

We present a general strategy for the synthesis of stable, multicomponent fused polygon complexes in which coordination-driven self-assembly allows for single supramolecular species to be formed from multicomponent self-assembly and the shape of the obtained polygons can be controlled simply by changing the ratio of individual components. The compounds have been characterized by multinuclear NMR spectroscopy and electrospray ionization mass spectrometry.

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Figures

Scheme 1
Scheme 1
Synthesis of Double Triangle 4.
Scheme 2
Scheme 2
Synthesis of Fused Rhomboid 7 & 8.
Figure 1
Figure 1
Calculated (top, blue) and experimental (bottom, red) ESI-MS spectrum (5+) and molecular force field model of double triangle 4 (A), double rhomboid 7 (B) and triple rhomboid 8 (C).

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