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Dimeric Corrole Analogs of Chlorophyll Special Pairs.


ABSTRACT: Chlorophyll special pairs in photosynthetic reaction centers function as both exciton acceptors and primary electron donors. Although the macrocyclic natural pigments contain Mg(II), the central metal in most synthetic analogs is Zn(II). Here we report that insertion of either Al(III) or Ga(III) into an imidazole-substituted corrole affords an exceptionally robust photoactive dimer. Notably, attractive electronic interactions between dimer subunits are relatively strong, as documented by signature changes in NMR and electronic absorption spectra, as well as by cyclic voltammetry, where two well-separated reversible redox couples were observed. EPR spectra of one-electron oxidized dimers closely mimic those of native special pairs, and strong through-space interactions between corrole subunits inferred from spectroscopic and electrochemical data are further supported by crystal structure analyses (3 Å interplanar distances, 5 Å lateral shifts, and 6 Å metal to metal distances).

SUBMITTER: Sharma VK 

PROVIDER: S-EPMC8249354 | biostudies-literature | 2021 Jun

REPOSITORIES: biostudies-literature

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Dimeric Corrole Analogs of Chlorophyll Special Pairs.

Sharma Vinay K VK   Mahammed Atif A   Mizrahi Amir A   Morales Maryann M   Fridman Natalia N   Gray Harry B HB   Gross Zeev Z  

Journal of the American Chemical Society 20210520 25


Chlorophyll special pairs in photosynthetic reaction centers function as both exciton acceptors and primary electron donors. Although the macrocyclic natural pigments contain Mg(II), the central metal in most synthetic analogs is Zn(II). Here we report that insertion of either Al(III) or Ga(III) into an imidazole-substituted corrole affords an exceptionally robust photoactive dimer. Notably, attractive electronic interactions between dimer subunits are relatively strong, as documented by signatu  ...[more]

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