Dynamical simulation of collision-induced dissociation of pyrene dimer cation
Author:
Funder
China Scholarship Council
Publisher
Springer Science and Business Media LLC
Subject
Physical and Theoretical Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00214-020-02716-7.pdf
Reference85 articles.
1. Eaves NA, Dworkin SB, Thomson MJ (2015) The importance of reversibility in modeling soot nucleation and condensation processes. Proc Comb Inst 35(2):1787
2. Mao Q, van Duin ACT, Luo KH (2017) Formation of incipient soot particles from polycyclic aromatic hydrocarbons: a ReaxFF molecular dynamics study. Carbon 121:380
3. Saggese C, Ferrario S, Camacho J, Cuoci A, Frassoldati A, Ranzi E, Wang H, Faravelli T (2015) Kinetic modeling of particle size distribution of soot in a premixed burner-stabilized stagnation ethylene flame. Combust Flame 162(9):3356
4. Aubagnac-Karkar D, El Bakali A, Desgroux P (2018) Soot particles inception and PAH condensation modelling applied in a soot model utilizing a sectional method. Combust Flame 189:190
5. Totton TS, Chakrabarti D, Misquitta AJ, Sander M, Wales DJ, Kraft M (2010) Modelling the internal structure of nascent soot particles. Combust Flame 157(5):909
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