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Synthesis of New Chlorin e6 Trimethyl and Protoporphyrin IX Dimethyl Ester Derivatives and Their Photophysical and Electrochemical Characterizations
Authors:Dr José C J M D S Menezes  Prof M Amparo F Faustino  Prof Kleber T de Oliveira  Dr Marciana P Uliana  Prof Vitor F Ferreira  Dr Steffen Hackbarth  Prof Beate Röder  Dr Thiago Teixeira Tasso  Dr Taniyuki Furuyama  Prof Nagao Kobayashi  Prof Artur M S Silva  Prof M Graça P M S Neves  Prof José A S Cavaleiro
Institution:1. Department of Chemistry and QOPNA, University of Aveiro, 3810‐193 Aveiro (Portugal), Fax: (+351)234‐401‐470;2. Departamento de Química, Universidade Federal de S?o Carlos, 13565‐905 S?o Carlos ‐ SP (Brazil);3. Departamento de Química Organica, Universidade Federal Fluminense, 24020‐141 Niterói, Rio de Janeiro (Brazil);4. Institut für Physik, Humboldt‐Universit?t zu Berlin, Newtonstrasse 15, 12489 Berlin (Germany);5. Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 980‐8578 (Japan)
Abstract:In view of increasing demands for efficient photosensitizers for photodynamic therapy (PDT), we herein report the synthesis and photophysical characterizations of new chlorin e6 trimethyl ester and protoporphyrin IX dimethyl ester dyads as free bases and ZnII complexes. The synthesis of these molecules linked at the β‐pyrrolic positions to pyrano3,2‐c]coumarin, pyrano3,2‐c]quinolinone, and pyrano3,2‐c]naphthoquinone moieties was performed by using the domino Knoevenagel hetero Diels–Alder reaction. The α‐methylenechromanes, α‐methylenequinoline, and ortho‐quinone methides were generated in situ from a Knoevenagel reaction of 4‐hydroxycoumarin, 4‐hydroxy‐6‐methylcoumarin, 4‐hydroxy‐N‐methylquinolinone, and 2‐hydroxy‐1,4‐naphthoquinone, respectively, with paraformaldehyde in dioxane. All the dyads as free bases and as ZnII complexes were obtained in high yields. All new compounds were fully characterized by 1D and 2D NMR techniques, UV/Vis spectroscopy, and HRMS. Their photophysical properties were evaluated by measuring the fluorescence quantum yield, the singlet oxygen quantum yield by luminescence detection, and also the triplet lifetimes were correlated by flash photolysis and intersystem crossing (ISC) rates. The fluorescence lifetimes were measured by a time‐correlated single photon count (TCSPC) method, fluorescence decay associated spectra (FDAS), and anisotropy measurements. Magnetic circular dichroism (MCD) and circular dichroism (CD) spectra were recorded for one ZnII complex in order to obtain information, respectively, on the electronic and conformational states, and interpretation of these spectra was enhanced by molecular orbital (MO) calculations. Electrochemical studies of the ZnII complexes were also carried out to gain insights into their behavior for such applications.
Keywords:Chlorin   e6  hetero Diels–  Alder  Knoevenagel  photophysics  porphyrinoids
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