4.1 Article

Syntheses and characterization of dithienyl-blocked hexapyrrin and its mononuclear complexes

Journal

JOURNAL OF PORPHYRINS AND PHTHALOCYANINES
Volume 27, Issue 07N10, Pages 1089-1096

Publisher

WORLD SCIENTIFIC PUBL CO PTE LTD
DOI: 10.1142/S1088424623500335

Keywords

oligopyrrins; metal coordination; near-infrared absorption; crystal structures

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A dithienyl-blocked hexapyrrane S-2-P-6 was synthesized by condensation and oxidation, and its mononuclear metal complexes 1-Cu and 1-Zn were obtained. The crystal structures showed the different conformations of the compounds, and the complexes had red-shifted absorption compared to the parent compound 1.
With the purpose to develop long chain-conjugated oligopyrrin-like compounds and their metal complexes, and thus achieve tunable near-infrared absorption, a dithienyl-blocked hexapyrrane S-2-P-6 was synthesized by acid-catalyzed [2+4+2] condensation, followed by oxidation with DDQ to afford dithiaoctapyrrin 1, and its mononuclear metal complexes 1-Cu and 1-Zn were synthesized by treating 1 with Cu(II) and Zn(II) acetates. All the compounds were systematically characterized by NMR/EPR, and HRMS. The crystal structures revealed that 1 adopts a double hook-like conformation. Whereas, both complexes 1-Cu and 1-Zn adopt spiral-hook hybrid conformations, showing smaller interplanar angles between the rings within the spiral part, compared with those in the hook-like counterpart of molecule 1, which is favorable for red-shifting the absorption. As expected, the absorption band edges for complexes 1-Cu and 1-Zn are red-shifted to ca. 1560 nm, compared with that of 1260 nm observed for 1.

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