Efficient Synthesis and Microwave‐Assisted Sonogashira Reactions of Triflate‐Substituted Porphyrin

Author:

Arcudi Francesca1ORCID,Sartorel Andrea1ORCID,Fortunato Anna1ORCID,Marangoni Tomas23ORCID,Demitri Nicola4ORCID,Maggini Michele1ORCID,Đorđević Luka1ORCID

Affiliation:

1. Department of Chemical Sciences University of Padova Via F. Marzolo 1 35131 – Padova Italy

2. Chemistry Department University of Maine 154 Aubert Hall 04469 Orono Maine USA

3. Frontier Institute for Research in Sensor Technologies University of Maine 261 ESRB-Barrows Hall Orono ME 04469 – Maine USA

4. Elettra – Sincrotrone Trieste S.S. 14 Km 163.5 in Area Science Park 34149 Basovizza Trieste Italy

Abstract

AbstractPorphyrins that bear halogens at the meso‐aryl positions are useful building blocks for the preparation of light‐harvesting arrays and materials through cross‐coupling procedures. Despite the wide use of such intermediates, their scale‐up and purification are usually hampered by tedious chromatographic separations because of the statistical nature of the synthetic protocol and the similar polarity of the different products. Here, we propose the use of porphyrins bearing a triflatophenyl group as alternative starting materials for palladium cross‐coupling reactions. In particular, purification of the zinc 5,10,15‐triaryl‐20‐(4‐triflatophenyl)porphyrin (ZnP‐OTf) model compound by column chromatography proved to be much easier compared to porphyrin analogues that carry halogen substituents. This is the result of the increased polarity of compounds functionalized by highly polar triflate groups if compared to those substituted by halogens. To show the value of the triflatophenylporphyrin model compound in cross‐coupling reactions, we developed a microwave‐assisted Sonogashira protocol that quantitatively converts the ZnP‐OTf to the corresponding alkynylphenylporphyrin, in relatively short reaction times. Finally, we showed that the proposed ZnP‐OTf building block can be conveniently converted into an alkynyl‐linked molecular wire to bridge the zinc porphyrin donor with the [60]fullerene acceptor in a molecular dyad. The prepared dyad showed efficient photoinduced charge separation from singlet ZnP excited state to [60]fullerene in a polar solvent.

Funder

Fondazione Cassa di Risparmio di Padova e Rovigo

Publisher

Wiley

Subject

Organic Chemistry,Physical and Theoretical Chemistry

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