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Long-range electrostatic effects from intramolecular Lewis acid binding influence the redox properties of cobalt-porphyrin complexes.
Alvarez-Hernandez, Jose L; Zhang, Xiaowei; Cui, Kai; Deziel, Anthony P; Hammes-Schiffer, Sharon; Hazari, Nilay; Piekut, Nicole; Zhong, Mingjiang.
Afiliación
  • Alvarez-Hernandez JL; Department of Chemistry, Yale University New Haven CT 06520 USA nilay.hazari@yale.edu.
  • Zhang X; Department of Chemical and Environmental Engineering, Yale University New Haven CT 06520 USA mingjiang.zhong@yale.edu.
  • Cui K; Department of Chemistry, Princeton University Princeton NJ 08544 USA shs566@princeton.edu.
  • Deziel AP; Department of Chemistry, Yale University New Haven CT 06520 USA nilay.hazari@yale.edu.
  • Hammes-Schiffer S; Department of Chemistry, Princeton University Princeton NJ 08544 USA shs566@princeton.edu.
  • Hazari N; Department of Chemistry, Yale University New Haven CT 06520 USA nilay.hazari@yale.edu.
  • Piekut N; Department of Chemistry, Yale University New Haven CT 06520 USA nilay.hazari@yale.edu.
  • Zhong M; Department of Chemical and Environmental Engineering, Yale University New Haven CT 06520 USA mingjiang.zhong@yale.edu.
Chem Sci ; 15(18): 6800-6815, 2024 May 08.
Article en En | MEDLINE | ID: mdl-38725508
ABSTRACT
A CoII-porphyrin complex (1) with an appended aza-crown ether for Lewis acid (LA) binding was synthesized and characterized. NMR spectroscopy and electrochemistry show that cationic group I and II LAs (i.e., Li+, Na+, K+, Ca2+, Sr2+, and Ba2+) bind to the aza-crown ether group of 1. The binding constant for Li+ is comparable to that observed for a free aza-crown ether. LA binding causes an anodic shift in the CoII/CoI couple of between 10 and 40 mV and also impacts the CoIII/CoII couple. The magnitude of the anodic shift of the CoII/CoI couple varies linearly with the strength of the LA as determined by the pKa of the corresponding metal-aqua complex, with dications giving larger shifts than monocations. The extent of the anodic shift of the CoII/CoI couple also increases as the ionic strength of the solution decreases. This is consistent with electric field effects being responsible for the changes in the redox properties of 1 upon LA binding and provides a novel method to tune the reduction potential. Density functional theory calculations indicate that the bound LA is 5.6 to 6.8 Å away from the CoII ion, demonstrating that long-range electrostatic effects, which do not involve changes to the primary coordination sphere, are responsible for the variations in redox chemistry. Compound 1 was investigated as a CO2 reduction electrocatalyst and shows high activity but rapid decomposition.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2024 Tipo del documento: Article Pais de publicación: Reino Unido

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2024 Tipo del documento: Article Pais de publicación: Reino Unido