Quantum mechanic study of high molecular mass compounds in combustion conditions

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Publication Type Journal Article
School or College College of Science
Department Chemistry
Program Center for the Simulation of Accidental Fires and Explosions (C-SAFE)
Creator Truong, Thanh; Sarofim, Adel F.
Other Author Violi, A.; D'Anna, A.; D'Alessio, A.
Title Quantum mechanic study of high molecular mass compounds in combustion conditions
Date 2001
Description Experimental studies on soot formation show interesting trends that can only be explained by a polymerization pathway. These experimental findings are reviewed and ab initio calculations are used to evaluate possible mechanistic pathways. A sequence of chemical reactions between aromatic compounds and compounds containing conjugated double bonds was studied in detail. The reactions analyzed represent a first possible propagation step of a sequence that can be easily repeated for the formation of high molecular mass compounds. The distinguishing features of the proposed model lie in the chemical specificity of the routes proposed. The aromatic radical attacks the double bond of five-membered ring PAH giving addition reactions. This is allowed by specific compounds that are exceptional monomers as they form resonantly stabilized radical intermediates, relieving part of the large strain in the five-membered rings by linear polymer formation.
Type Text
Publisher Combustion Institute
Subject High molecular mass compounds; Quantum mechanics; Soot formation
Subject LCSH Combustion; Soot; Quantum theory; Polymerization; Combustion products
Language eng
Bibliographic Citation Violi, A., Truong, T., D'Anna, A., D'Alessio, A., & Sarofim, A. F. (2001). Quantum mechanic study of high molecular mass compounds in combustion conditions. Proceedings of the 2nd Joint Meeting of the US Sections of the Combustion Institute, Oakland, CA, March 25, paper #104.
Rights Management (c)Combustion Institute
Format Medium application/pdf
Format Extent 2,069,286 bytes
Identifier ir-main,7199
ARK ark:/87278/s6b573bq
Setname ir_uspace
ID 706700
Reference URL https://collections.lib.utah.edu/ark:/87278/s6b573bq
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