Parents
Sign in to add mentorJerry Y.S. Lin | grad student | 2007-2011 | Sun Yet Sun University | |
(Ph.D. from Tianjin Univ/ASU) |
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Publications
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Yang X, Liu S, Li J, et al. (2020) Promotion effect of strong metal-support interaction to thermocatalytic, photocatalytic, and photothermocatalytic oxidation of toluene on Pt/SrTiO. Chemosphere. 249: 126096 |
Wu HC, Rui Z, Lin JYS. (2020) Hydrogen production with carbon dioxide capture by dual-phase ceramic-carbonate membrane reactor via steam reforming of methane Journal of Membrane Science. 598: 117780 |
Li J, Lian R, Wang J, et al. (2020) Oxygen vacancy defects modulated electrocatalytic activity of iron-nickel layered double hydroxide on Ni foam as highly active electrodes for oxygen evolution reaction Electrochimica Acta. 331: 135395 |
Kong J, Jiang C, Rui Z, et al. (2020) Photothermocatalytic synergistic oxidation: An effective way to overcome the negative water effect on supported noble metal catalysts for VOCs oxidation Chemical Engineering Journal. 397: 125485 |
Zhang L, Chen J, Guo X, et al. (2020) Combination of reduction-deposition Pd loading and zeolite dealumination as an effective route for promoting methane combustion over Pd/Beta Catalysis Today |
Wang X, Rui Z, Ji H. (2020) DFT study of formaldehyde oxidation on silver cluster by active oxygen and hydroxyl groups: Mechanism comparison and synergistic effect Catalysis Today. 347: 124-133 |
Zou X, Chen J, Rui Z, et al. (2020) Sequential growth reveals multi-spinel interface promotion for methane combustion over alumina supported palladium catalyst Applied Catalysis B-Environmental. 273: 119071 |
Chen J, Zou X, Rui Z, et al. (2020) Deactivation Mechanism, Countermeasures, and Enhanced CH4 Oxidation Performance of Nickel/Cobalt Oxides Energy Technology. 8: 1900641 |
Wang X, Zou X, Rui Z, et al. (2020) Highly dispersed and active Pd nanoparticles over titania support through engineering oxygen vacancies and their anchoring effect Aiche Journal. 66 |
Ji W, Wang X, Tang M, et al. (2019) Strategy for stabilizing noble metal nanoparticles without sacrificing active sites. Chemical Communications (Cambridge, England) |