[15] Guohui Song, Jun Xiao, Chao Yan, Haiming Gu, Hao Zhao*, Comprehensive Evaluation of Quality of Gaseous Biofuels: Statistical Assessment and Guidance on Production Technologies, Renew. Sust. Energ. Rev., 2022, In Press. (IF=17)
[14] Hao Zhao, Guohui Song, Zhe Chen, Xiaofang Yang, Chao Yan, Shota Abe, Yiguang Ju, Sankaran Sundaresan, Bruce E. Koel*, In situ identification of NNH and N2H2 by using molecular-beam mass spectrometry in plasma-assisted catalysis for NH3 synthesis, ACS Energy Lett., 7 (2022) 53–58. (IF=24, Front Cover)
[13] Qi Dong, Yonggang Yao, Sichao Cheng, Konstantinos Alexopoulos, Jinlong Gao, Sanjana Srinivas, Yifan Wang, Yong Pei, Chaolun Zheng, Alexandra H. Brozena, Xizheng Wang, Jiaqi Dai, Hao Zhao, Weiqing Zheng, Hilal Ezgi Toraman, Zhiwei Lin, Bao Yang, Yiguang Ju, Dionisios G. Vlachos, Dongxia Liu, Liangbing Hu*, Programmable Heating and Quenching for Efficient Thermochemical Synthesis, Nature, 605 (2022) 470-476. (IF=70, Front Cover)
[12] Hao Zhao*, Chao Yan, Guohui Song, Ziyu Wang, Yiguang Ju, Studies of low and intermediate temperature oxidation of propane up to 100 atm in a supercritical-pressure jet-stirred reactor, Proc. Combust. Inst. (2023) In press. https://doi.org/10.1016/j.proci.2022.07.086
[11] Ziyu Wang, Hao Zhao*, Chao Yan, Ying Lin, Aditya D. Lele, Wenbin Xu, Brandon Rotavera, Ahren W. Jasper, Stephen J. Klippenstein, Yiguang Ju, Methanol oxidation up to 100 atm in a supercritical pressure jet-stirred reactor, Proc. Combust. Inst. (2023) In press.
https://doi.org/10.1016/j.proci.2022.07.068
[10] Junfeng Bai, Peng Zhang, Chong-Wen Zhou, Hao Zhao*, Theoretical Studies of Real-Fluid Oxidation of Hydrogen Under Supercritical Conditions by Using the Virial Equation of State, Combust. Flame, (2021) In press.
https://doi.org/10.1016/j.combustflame.2021.111945
[9] Chao Yan, Hao Zhao*, Ziyu Wang, Guohui Song, Ying Lin, Clayton R. Mulvihill, Ahren W. Jasper, Stephen J. Klippenstein, Yiguang Ju, Low- and intermediate-temperature oxidation of dimethyl ether up to 100 atm in a supercritical pressure jet-stirred reactor, Combust. Flame, (2022) In Press. https://doi.org/10.1016/j.combustflame.2022.112059
[8] Hao Zhao*, Chao Yan, Tianhan Zhang, Guoming Ma, Michael J. Souza, Chongwen Zhou, and Yiguang Ju, Studies of high-pressure n-butane oxidation with CO2 dilution up to 100 atm using a supercritical-pressure jet-stirred reactor, Proc. Combust. Inst. 38 (2021) 279-287.
[7] Hao Zhao*, Shixiang Liu, Can Huang, Chao Yan, Yongfeng Qi, Feng Zhang, Yiguang Ju, Studies of ozone-sensitized low- and high-temperature oxidations of diethyl carbonate, J. Phys. Chem. A 125 (2021) 1760-1765.
[6] Hao Zhao*, Ningbo Zhao, Tianhan Zhang, Shuqun Wu, Guoming Ma, Chao Yan, Yiguang Ju, Studies of multi-channel spark ignition of lean n-pentane/air mixtures in a spherical chamber, Combust. Flame 212 (2020) 337-344.
[5] Hao Zhao*, Zunhua Zhang, Yacine Rezgui, Ningbo Zhao, Yiguang Ju, Studies of high pressure 1,3-butadiene flame speeds and high temperature chemistry using hydrogen and oxygen sensitization, Combust. Flame 200 (2019) 135-141.
[4] Hao Zhao*, Lingnan Wu, Charles Patrick, Zunhua Zhang, Yacine Rezgui, Xueliang Yang, Gerard Wysocki, Yiguang Ju, Study of low temperature oxidation of n-pentane with nitric oxide addition in a jet stirred reactor, Combust. Flame 197 (2018) 78-87.
[3] Hao Zhao*, Alon Dana, Zunhua Zhang, William Green, Yiguang Ju, Experimental and modeling study of the mutual oxidation of n-pentane and nitrogen dioxide at low and high temperatures in a jet stirred reactor, Energy 165 (2018) 727-738.
[2] Hao Zhao*, Jiapeng Fu, Francis M. Haas, Yiguang Ju, Effect of prompt dissociation of formyl radical on 1, 3, 5-trioxane and CH2O laminar flame speeds with CO2 dilution at elevated pressure, Combust. Flame 183 (2017) 253-260.
[1] Hao Zhao*, Xueliang Yang, Yiguang Ju, Kinetic studies of ozone assisted low temperature oxidation of dimethyl ether in a flow reactor using molecular-beam mass spectrometry, Combust. Flame 173 (2016) 187-194.