| Literature DB >> 33572895 |
Massimiliano Gaeta1, Elisabetta Rodolico1, Maria E Fragalà1, Andrea Pappalardo1, Ilenia Pisagatti2, Giuseppe Gattuso2, Anna Notti2, Melchiorre F Parisi2, Roberto Purrello1, Alessandro D'Urso1.
Abstract
The pivotal role played by potassium ions in the noncovalent synthesis of discrete porphyrin-calixarene nanostructures has been examined. The flattened-cone conformation adopted by the two cavities of octa-cationic calix[4]tube C4T was found to prevent the formation of complexes with well-defined stoichiometry between this novel water-soluble calixarene and the tetra-anionic phenylsulfonate porphyrin CuTPPS. Conversely, preorganization of C4T into a C4v-symmetrical scaffold, triggered by potassium ion encapsulation (C4T@K+), allowed us to carry out an efficient hierarchical self-assembly process leading to 2D and 3D nanostructures. The stepwise formation of discrete CuTPPS/C4T@K+ noncovalent assemblies, containing up to 33 molecular elements, was conveniently monitored by UV/vis spectroscopy by following the absorbance of the porphyrin Soret band.Entities:
Keywords: calix[4]tubes; calixarenes; hierarchical control; metallo-porphyrins; noncovalent synthesis
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Year: 2021 PMID: 33572895 PMCID: PMC7866244 DOI: 10.3390/molecules26030704
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411