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April 10, 2026Russian Journal of Inorganic Chemistry0 citations

Influence of Structural Modification of Pyridyl Derivatives of Fullero60Pyrrolidine and (Phthalocyaninato)Zinc(II) on the Stability of Their Complexes

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VMV. A. MozgovaEOE. N. OvchenkovaNBN. G. Bichan

Key Points

  • The aim is to explore how structural changes in pyridyl derivatives affect the stability of their complexes with zinc phthalocyanines.
  • Studied coordination of pyridyl derivatives with zinc phthalocyanines
  • Analyzed thermodynamics using the molar ratio method
  • Characterized structures through UV-vis, IR, 1H NMR spectroscopy, and mass spectrometry
  • Stability constants of the complexes range around 10^5 L/mol, significantly higher than reactions with unsubstituted pyridine
  • All complexes formed were 1:1 donor-acceptor types
  • The stability constants varied by 1 to 1.5 orders of magnitude, demonstrating effective structural modifications

Abstract

The coordination of 1-methyl-2-(pyridin-4'-yl)-3,4-fullero60pyrrolidine (PyC60) and 2,5-di-(pyridin-4'-yl)-3,4-fullero60pyrrolidine (Py2C60) by zinc phthalocyanines functionalized with carbazole and tert-butyl substituents was studied in this work. The thermodynamics of the transformation and the structure of the reaction product molecules were revealed by the molar ratio method and the methods of UV-vis, IR, 1H NMR spectroscopy, and mass spectrometry, respectively. Thermodynamic stability constants and key spectral characteristics were obtained for the reaction products, which in all cases correspond to a 1 : 1 donor-acceptor complex. The resulting complexes, like all previously described analogs, are characterized by a stability constant whose value fluctuates within one to one and a half orders of magnitude around 105 L/mol, which is 3 to 5 orders of magnitude higher than that for the reaction of metallophthalocyanines with unsubstituted pyridine. These results expand the design possibilities of functional materials for optoelectronics based on fullero60pyrrolidines and zinc phthalocyanine complexes.

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Cite This Study

Mozgova et al. (2026) studied this question.

synapsesocial.com/papers/69d8940c6c1944d70ce04ffahttps://doi.org/10.1134/s003602362560399x
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