Literature DB >> 23594346

Synthesis, electrochemistry, and photophysics of a family of phlorin macrocycles that display cooperative fluoride binding.

Allen J Pistner1, Daniel A Lutterman, Michael J Ghidiu, Ying-Zhong Ma, Joel Rosenthal.   

Abstract

A homologous set of 5,5-dimethylphlorin macrocycles in which the identity of one aryl ring is systematically varied has been prepared. These derivatives contain ancillary pentafluorophenyl (3H(Phl(F))), mesityl (3H(Phl(Mes))), 2,6-bismethoxyphenyl (3H(Phl(OMe))), 4-nitrophenyl (3H(Phl(NO2))), or 4-tert-butylcarboxyphenyl (3H(Phl(CO2tBu))) groups at the 15-meso-position. These porphyrinoids were prepared in good yields (35-50%) and display unusual multielectron redox and photochemical properties. Each phlorin can be oxidized up to three times at modest potentials and can be reduced twice. The electron-donating and electron-releasing properties of the ancillary aryl substituent attenuate the potentials of these redox events; phlorins containing electron-donating aryl groups are easier to oxidize and harder to reduce, while the opposite trend is observed for phlorins containing electron-withdrawing functionalities. Phlorin substitution also has a pronounced effect on the observed photophysics, as introduction of electron-releasing aryl groups on the periphery of the macrocycle is manifest in larger emission quantum yields and longer fluorescence lifetimes. Each phlorin displays an intriguing supramolecular chemistry and can bind 2 equiv of fluoride. This binding is allosteric in nature, and the strength of halide binding correlates with the ability of the phlorin to stabilize the buildup of charge. Moreover, fluoride binding to generate complexes of the form 3H(Phl(R))·2F(-) modulates the redox potentials of the parent phlorin. As such, titration of phlorin with a source of fluoride represents a facile method to tune the ability of this class of porphyrinoid to absorb light and engage in redox chemistry.

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Year:  2013        PMID: 23594346      PMCID: PMC3671758          DOI: 10.1021/ja401391z

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  22 in total

1.  Calixphyrins: Novel Macrocycles at the Intersection between Porphyrins and Calixpyrroles This work was supported by the National Institutes of Health (CA-68682, GM-58907, and TW-00682 to J.L.S.), the National Science Foundation (CHE-9725399 to J.L.S. and CHE-9807702 to V.L. for the purchase of the Nonius Kappa CCD), the Howard Hughes Foundation (V.K. and J.L.S.), the Grant Agency of the Czech Republic (No. 203/97/1099 to V.K.), the Ministry of Education (No. VS-97135 and Project CEZ: J19/98: 223400008 to V.K.), and the Howard Hughes Medical Institute (74195-541101 to V.K.).

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