Is Phenylnitrene a Missing Link in the Formation of Polycyclic Aromatic Nitrogen Heterocycles?
Abstract
Abstract The incorporation of heteroatoms into the framework of polycyclic aromatic hydrocarbons (PAHs), in particular of nitrogen to yield polycyclic aromatic nitrogen heterocycles (PANHs), has been proposed for both astronomical and combustion environments, but no suitable precursors and pathways have been found. Analogous pathways to PAH formation are kinetically or energetically inhibited in the presence of a nitrogen heteroatom. We report on the reaction of phenylnitrene ( 3 PhN, c ‐C 6 H 5 N) with resonance‐stabilized propargyl radicals (C 3 H 3 ) and find that the association reaction bifurcates depending on the orientation of the attacking propargyl radical and yields multiple isomeric products. Among them, we identify the condensed‐ring quinoline and conclude that nitrenes are viable candidates to drive the formation of PANHs.
Article Details
Authors (7)
Rahel Arns
Lehrstuhl Technische Thermodynamik Fakultät für Maschinenbau Universität Paderborn Warburger Str. 100 33098 Paderborn Germany
Rory McClish
Laboratory for Atmospheric and Space Physics
Patrick Hemberger
Laboratory for Femtochemistry and Synchrotron Radiation, Paul Scherrer Institut (PSI) 6 , 5232 Villigen,
Andras Bodi
Laboratory for Synchrotron Radiation and Femtochemistry Paul Scherrer Institute (PSI) Villigen 5232 Switzerland
Jordy Bouwman
Laboratory for Atmospheric and Space Physics
Tina Kasper
Lehrstuhl Technische Thermodynamik Fakultät für Maschinenbau Universität Paderborn Warburger Str. 100 33098 Paderborn Germany
Domenik Schleier
Institut für Physik und Astronomie Technische Universität Berlin Hardenbergstr. 36 10623 Berlin Germany