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JOURNALS // Fizika Goreniya i Vzryva // Archive

Fizika Goreniya i Vzryva, 2024 Volume 60, Issue 4, Pages 34–37 (Mi fgv5783)

Ways of para-pyridyl interaction with molecular oxygen: theoretical study

A. S. Savchenkovaa, A. M. Golenkoa, I. V. Checheta, S. S. Matveeva, S. G. Matveeva, A. A. Konnovb, A. M. Mebelc

a Samara National Research University
b Lund University, Lund
c Florida International University, Florida

Abstract: The formation of nitrogen oxides during combustion of coal or biofuel containing fuel-coupled nitrogen is an important environmental problem. As the simplest model system used to describe coal combustion, one can use a pyridyl molecule, which, on the one hand, has an aromatic structure and, on the other hand, contains a nitrogen atom in its structure. This paper describes a theoretical study of the reaction of para-pyridyl interaction with molecular oxygen. A surface of potential energy interaction of para-pyridyl interaction with molecular oxygen is constructed. The para-pyridyl radical barrierlessly attaches an oxygen molecule with formation of the PyOO radical, and then the reaction can follow one of three paths, leading to four possible products: 3H-pyrrole, HCO + HCN, 1$\lambda^2$-pyrrole, and 1$\lambda^3$,4-oxazine.

Keywords: pyridyl, quantum-chemical calculation, interaction with O$_2$.

UDC: 54.04

Received: 29.01.2024
Accepted: 07.02.2024

DOI: 10.15372/FGV2024.9446



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© Steklov Math. Inst. of RAS, 2024