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Updated: Apr 7, 2026

Preparation of SNS CobaltII Pincer Model Complexes of Liver Alcohol Dehydrogenase
Published on: March 19, 2020
Cyclodextrin-based PNN supramolecular assemblies: a new class of pincer-type ligands for aqueous organometallic
S Menuel1, E Bertaut, E Monflier
1Université d'Artois, Unité de Catalyse et de Chimie du Solide - UCCS, CNRS UMR 8181, Faculté des Sciences Jean Perrin, SP18, 62307 Lens Cedex, France. frederic.hapiot@univ-artois.fr.
Abstract:
Water-soluble cyclodextrins (CDs) bearing two nitrogen atoms as metal coordinating sites have been synthesized. An appropriate phosphane could be included within their cavity through the primary face to form self-assembled PNN supramolecular edifices. Once the PNN ligands were coordinated to platinum, the resulting complexes proved to be very effective as catalysts in a domino reaction, where a Pt-catalyzed reduction of nitrobenzene was followed by a Paal-Knorr pyrrole reaction. In the nitrobenzene reduction, the modified CDs acted both as first- and second-sphere ligands. Contrary to an acyclic glucopyranose-based NN ligand unable to interact with a phosphane ligand, the CD-based PNN ligands stabilized the catalytic species in water by supramolecular means. Interestingly, the product and the water-soluble Pt-catalyst could be recovered in two different phases once the reaction was complete.
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