Joe V. Michael, PhD

Affiliations: 
Argonne National Laboratory, Lemont, IL, United States 
Area:
CHEMICAL KINETICS
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"Joe Michael"
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Publications

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Sivaramakrishnan R, Michael JV, Harding LB, et al. (2015) Resolving Some Paradoxes in the Thermal Decomposition Mechanism of Acetaldehyde. The Journal of Physical Chemistry. A
Peukert SL, Sivaramakrishnan R, Michael JV. (2015) High temperature rate constants for H/D + n-C4H10 and i-C4H10 Proceedings of the Combustion Institute. 35: 171-179
Peukert SL, Labbe NJ, Sivaramakrishnan R, et al. (2013) Direct measurements of rate constants for the reactions of CH3 radicals with C2H6, C2H4, and C2H2 at high temperatures. The Journal of Physical Chemistry. A. 117: 10228-38
Peukert SL, Michael JV. (2013) High-temperature shock tube and modeling studies on the reactions of methanol with D-atoms and CH3-radicals. The Journal of Physical Chemistry. A. 117: 10186-95
Peukert SL, Sivaramakrishnan R, Michael JV. (2013) High temperature shock tube and theoretical studies on the thermal decomposition of dimethyl carbonate and its bimolecular reactions with H and D-atoms. The Journal of Physical Chemistry. A. 117: 3718-28
Peukert SL, Sivaramakrishnan R, Michael JV. (2013) High temperature shock tube studies on the thermal decomposition of O3 and the reaction of dimethyl carbonate with O-atoms. The Journal of Physical Chemistry. A. 117: 3729-38
Peukert SL, Sivaramakrishnan R, Su MC, et al. (2013) High temperature rate constants for H/D + methyl formate and methyl acetate Proceedings of the Combustion Institute. 34: 463-471
Peukert S, Sivaramakrishnan R, Michael JV. (2013) Shock tube and modeling study of the pyrolysis of dimethyl carbonate and its reaction with D-and O-atoms 8th Us National Combustion Meeting 2013. 1: 12-21
Sivaramakrishnan R, Michael JV, Harding LB, et al. (2012) Shock tube explorations of roaming radical mechanisms: the decompositions of isobutane and neopentane. The Journal of Physical Chemistry. A. 116: 5981-9
Peukert SL, Sivaramakrishnan R, Su MC, et al. (2012) Experiment and theory on methylformate and methylacetate kinetics at high temperatures: Rate constants for H-atom abstraction and thermal decomposition Combustion and Flame. 159: 2312-2323
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