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The control of nitric oxide dynamics and interaction with substituted zinc-phthalocyanines

  • Laboratoire des Interfaces et Matériaux Avancés
  • Faculté des Sciences de Monastir
  • Laboratoire de Chimie Organique et Analytique
  • Institut Supérieur de l'Education et de la Formation Continue
  • UMR 7141 CNRS-Sorbonne Université

Research output: Contribution to journalArticlepeer-review

Abstract

Phthalocyanines are artificial macrocycles that can harbour a central metal atom with four symmetric coordinations. Similar to metal-porphyrins, metal-phthalocyanines (M-PCs) may bind small molecules, especially diatomic gases such as NO and O2. Furthermore, various chemical chains can be grafted at the periphery of the M-PC macrocycle, which can change its properties, including the interaction with diatomic gases. In this study, we synthesized Zn-PCs with two different substituents and investigated their effects on the interaction and dynamics of nitric oxide (NO). Time-resolved absorption spectroscopy from picosecond to millisecond revealed that NO dynamics dramatically depends on the nature of the groups grafted to the Zn-PC macrocycle. These experimental results were rationalized by DFT calculations, which demonstrate that electrostatic interactions between NO and the quinoleinoxy substituent modify the potential energy surface and decrease the energy barrier for NO recombination, thus controlling its affinity.

Original languageEnglish
Pages (from-to)772-780
Number of pages9
JournalDalton Transactions
Volume53
Issue number2
DOIs
Publication statusPublished - 30 Nov 2023

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