Oxidative decomposition of 1,3-dichloropropene was investigated using quantum chemical molecular dynamics (QM/MD) at 1500 and 3000 K. Thermal oxidation of 1,3-dichloropropene was initiated by (1) abstraction of allylic H/Cl by O₂ and (2) intra-annular C-Cl bond scission and elimination of allylic Cl. A kinetic analysis shows that (2) is the more dominant initiation pathway, in agreement with QM/MD results. These QM/MD simulations reveal new routes to the formation of major products (H₂O, CO, HCl, CO₂), which are propagated primarily by the chloroperoxy (ClO₂), OH, and 1,3-dichloropropene derived radicals. In particular, intra-annular C-C/C-H bond dissociation reactions of intermediate aldehydes/ketones are shown to play a dominant role in t...
This article presents the application of the reactive step molecular dynamics simulation method [M. ...
A detailed theoretical study of the kinetics of the thermal decomposition of 2-chloropropene over th...
Analogues of important aromatic growth mechanisms in hydrocarbon pyrolysis and combustion systems ar...
Oxidative decomposition of 1,3-dichloropropene was investigated using quantum chemical molecular dyn...
Oxidative decomposition of 1,3-dichloropropene was investigated using quantum chemical molecular dyn...
We present a quantum chemical investigation of benzofuran and cholorobenzofuran formation mechanisms...
We present a quantum chemical investigation of benzofuran and cholorobenzofuran formation mechanisms...
We combine combustion experiments and density functional theory (DFT) calculations to investigate th...
We combine combustion experiments and density functional theory (DFT) calculations to investigate th...
Low-temperature partial oxidation of methane was investigated using reactive molecular dynamics (MD)...
An important environmental problem related to the use of fossil fuels is the formation of soot durin...
We have presented the quantum mechanical calculations of the decomposition pathways of 1, 2-hydroxy ...
Experimental and detailed modeling are presented for the high temperature combustion systems involvi...
An important environmental problem related to the use of fossil fuels is the formation of soot durin...
Density functional theory (DFT) calculations have been used to obtain thermochemical parameters for ...
This article presents the application of the reactive step molecular dynamics simulation method [M. ...
A detailed theoretical study of the kinetics of the thermal decomposition of 2-chloropropene over th...
Analogues of important aromatic growth mechanisms in hydrocarbon pyrolysis and combustion systems ar...
Oxidative decomposition of 1,3-dichloropropene was investigated using quantum chemical molecular dyn...
Oxidative decomposition of 1,3-dichloropropene was investigated using quantum chemical molecular dyn...
We present a quantum chemical investigation of benzofuran and cholorobenzofuran formation mechanisms...
We present a quantum chemical investigation of benzofuran and cholorobenzofuran formation mechanisms...
We combine combustion experiments and density functional theory (DFT) calculations to investigate th...
We combine combustion experiments and density functional theory (DFT) calculations to investigate th...
Low-temperature partial oxidation of methane was investigated using reactive molecular dynamics (MD)...
An important environmental problem related to the use of fossil fuels is the formation of soot durin...
We have presented the quantum mechanical calculations of the decomposition pathways of 1, 2-hydroxy ...
Experimental and detailed modeling are presented for the high temperature combustion systems involvi...
An important environmental problem related to the use of fossil fuels is the formation of soot durin...
Density functional theory (DFT) calculations have been used to obtain thermochemical parameters for ...
This article presents the application of the reactive step molecular dynamics simulation method [M. ...
A detailed theoretical study of the kinetics of the thermal decomposition of 2-chloropropene over th...
Analogues of important aromatic growth mechanisms in hydrocarbon pyrolysis and combustion systems ar...