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Optics Letters|August 2, 2018
Ultra-sensitive spectroscopy of OH radical in high-temperature transient reactionsShengkai Wang, Ronald K Hanson
Optics Letters|February 1, 2019
Quantitative 2-D OH thermometry using spectrally resolved planar laser-induced fluorescenceShengkai Wang, Ronald K Hanson
The Journal of Physical Chemistry. A|August 16, 2016
Shock Tube Measurement for the Dissociation Rate Constant of Acetaldehyde Using Sensitive CO DiagnosticsShengkai Wang, David F Davidson, Ronald K Hanson
The Journal of Physical Chemistry. A|October 26, 2017
Shock Tube and Laser Absorption Study of CH<sub>2</sub>O Oxidation via Simultaneous Measurements of OH and COShengkai Wang, David F Davidson, Ronald K Hanson
The Journal of Physical Chemistry. A|July 7, 2016
Improved Shock Tube Measurement of the CH4 + Ar = CH3 + H + Ar Rate Constant using UV Cavity-Enhanced Absorption Spectroscopy of CH3Shengkai Wang, David F Davidson, Ronald K Hanson
The Journal of Physical Chemistry. A|August 1, 2015
Shock Tube Measurement of the High-Temperature Rate Constant for OH + CH3 → ProductsShengkai Wang, Sijie Li, David F Davidson, et al.
The Journal of Physical Chemistry. A|April 21, 2020
Two-temperature Collisional-radiative Modeling of Partially Ionized O<sub>2</sub>-Ar Mixtures over 8000-10,000 K Behind Reflected Shock WavesYang Li, Shengkai Wang, Christopher L Strand, et al.
The Journal of Physical Chemistry. A|October 17, 2014
Reaction rate constant of CH2O + H = HCO + H2 revisited: a combined study of direct shock tube measurement and transition state theory calculationShengkai Wang, Enoch E Dames, David F Davidson, et al.
The Journal of Physical Chemistry. A|February 10, 2015
Shock-Tube Measurement of Acetone Dissociation Using Cavity-Enhanced Absorption Spectroscopy of COShengkai Wang, Kai Sun, David F Davidson, et al.
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