Yiguang Ju
Affiliations: | Mechanical and Aerospace Engineering | Princeton University, Princeton, NJ |
Area:
Mechanical Engineering, Energy, Aerospace Engineering, Fluid and Plasma PhysicsGoogle:
"Yiguang Ju"Children
Sign in to add traineeCollaborators
Sign in to add collaboratorJay B. Benziger | collaborator | (Chemistry Tree) | |
Kaoru Maruta | collaborator | 1995-1999 | Tohoku University |
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Publications
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Dong Q, Lele AD, Zhao X, et al. (2023) Depolymerization of plastics by means of electrified spatiotemporal heating. Nature. 616: 488-494 |
Wang Z, Yan C, Mei B, et al. (2023) Study of Low- and Intermediate-Temperature Oxidation Kinetics of Diethyl Ether in a Supercritical Pressure Jet-Stirred Reactor. The Journal of Physical Chemistry. A |
Rousso AC, Jasper AW, Ju Y, et al. (2020) Extreme Low-Temperature Combustion Chemistry: Ozone-Initiated Oxidation of Methyl Hexanoate. The Journal of Physical Chemistry. A |
Du N, Kong W, Han W, et al. (2020) Flame Propagation in Millimeter-Scale Tubes for Lean Ethylene–Oxygen Mixtures Aiaa Journal. 58: 1337-1347 |
Rousso AC, Goldberg BM, Chen TY, et al. (2020) Time and space resolved diagnostics for plasma thermal-chemical instability of fuel oxidation in nanosecond plasma discharges Plasma Sources Science and Technology |
Zhao H, Zhao N, Zhang T, et al. (2020) Studies of multi-channel spark ignition of lean n-pentane/air mixtures in a spherical chamber Combustion and Flame. 212: 337-344 |
Yan C, Teng CC, Chen T, et al. (2020) The kinetic study of excited singlet oxygen atom O(1D) reactions with acetylene Combustion and Flame. 212: 135-141 |
Zhang T, Ju Y. (2020) Structures and propagation speeds of autoignition-assisted premixed n-heptane/air cool and warm flames at elevated temperatures and pressures Combustion and Flame. 211: 8-17 |
Yang X, Zhao F, Yeh YW, et al. (2019) Nitrogen-plasma treated hafnium oxyhydroxide as an efficient acid-stable electrocatalyst for hydrogen evolution and oxidation reactions. Nature Communications. 10: 1543 |
Rousso AC, Hansen N, Jasper AW, et al. (2019) Identification of the Criegee intermediate reaction network in ethylene ozonolysis: impact on energy conversion strategies and atmospheric chemistry. Physical Chemistry Chemical Physics : Pccp |