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Dive into the research topics where Chung K. Law is active.

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Featured researches published by Chung K. Law.


Journal of Physical Chemistry A | 2016

Role of Carbon-Addition and Hydrogen-Migration Reactions in Soot Surface Growth

Hong-Bo Zhang; Dingyu Hou; Chung K. Law; Xiaoqing You

Using density functional theory and master equation modeling, we have studied the kinetics of small unsaturated aliphatic molecules reacting with polycyclic aromatic hydrocarbon (PAH) molecules having a diradical character. We have found that these reactions follow the mechanism of carbon addition and hydrogen migration (CAHM) on both spin-triplet and open-shell singlet potential energy surfaces at a rate that is about ten times those of the hydrogen-abstraction-carbon-addition (HACA) reactions at 1500 K in the fuel-rich postflame region. The results also show that the most active reaction sites are in the center of the zigzag edges of the PAHs. Furthermore, the reaction products are more likely to form straight rather than branched aliphatic side chains in the case of reacting with diacetylene. The computed rate constants are also found to be independent of pressure at conditions of interest in soot formation, and the activation barriers of the CAHM reactions are linearly correlated with the diradical characters.


Journal of Physical Chemistry A | 2014

Dimerization of polycyclic aromatic hydrocarbons in soot nucleation.

Hong-Bo Zhang; Xiaoqing You; Hongmiao Wang; Chung K. Law

A possible pathway of soot nucleation, in which localized π electrons play an important role in binding the polycyclic aromatic hydrocarbon (PAH) molecules having multiradical characteristics to form stable polymer molecules through covalent bonds, is studied using density functional and semiempirical methods. Results show that the number of covalent bonds formed in the dimerization of two identical PAHs is determined by the radical character, and the sites to form bonds are related to the aromaticity of individual six-membered ring structure. It is further shown that the binding energy of dimerization increases linearly with the diradical character in the range relevant to soot nucleation.


Journal of Physical Chemistry Letters | 2015

Role of Spin-Triplet Polycyclic Aromatic Hydrocarbons in Soot Surface Growth.

Hong-Bo Zhang; Xiaoqing You; Chung K. Law

Using density functional theory, a possible pathway of soot surface growth is studied in the low-temperature, postflame region in which spin-triplet polycyclic aromatic hydrocarbon (PAH) molecules with a small singlet-triplet energy gap react with unsaturated aliphatics such as acetylene via the carbon-addition-hydrogen-migration (CAHM) reaction. Results show that a PAH-core-aliphatic-shell structure is formed and the mass growth rate of this triplet soot surface growth reaction is one order of magnitude larger than that of the surface hydrogen-abstraction-carbon-addition (HACA) reaction at temperatures below 1500 K.


Proceedings of the Combustion Institute | 2007

Experimental counterflow ignition temperatures and reaction mechanisms of 1,3-butadiene

Xiaolin Zheng; Tianfeng Lu; Chung K. Law


Proceedings of the Combustion Institute | 2011

Laminar flame speeds of C5 to C8 n-alkanes at elevated pressures: Experimental determination, fuel similarity, and stretch sensitivity

Andrew P. Kelley; Andrew Smallbone; Delin Zhu; Chung K. Law


Proceedings of the Combustion Institute | 2009

Experimental and modeling study of laminar flame speed and non-premixed counterflow ignition of n-heptane

Andrew Smallbone; W. Liu; Chung K. Law; Xiaoqing You; Hai Wang


Proceedings of the Combustion Institute | 2011

Laminar flame speeds, non-premixed stagnation ignition, and reduced mechanisms in the oxidation of iso-octane

Andrew P. Kelley; Wei Liu; Yuxuan Xin; Andrew Smallbone; Chung K. Law


Proceedings of the Combustion Institute | 2015

Uncertainty analysis of the kinetic model prediction for high-pressure H2/CO combustion

Xiaoyu Li; Xiaoqing You; Fujia Wu; Chung K. Law


Journal of Physical Chemistry A | 2005

Thermochemical and Kinetic Analyses on Oxidation of Isobutenyl Radical and 2-Hydroperoxymethyl-2-propenyl Radical

Xiaolin Zheng; Hongyan Sun; Chung K. Law


Physical Chemistry Chemical Physics | 2018

An analysis of the explosion limits of hydrogen/oxygen mixtures with nonlinear chain reactions

Wenkai Liang; Chung K. Law

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