Zhen Ma, Ph.D.
Affiliations: | University of California, Riverside, Riverside, CA, United States |
Area:
surface chemistryGoogle:
"Zhen Ma"Mean distance: 9.3 | S | N | B | C | P |
Parents
Sign in to add mentorFrancisco Zaera | grad student | 2006 | UC Riverside | |
(Liquid -solid interfaces of catalysis relevance: In situ probing and related solution chemistry.) | ||||
Sheng Dai | post-doc | Oak Ridge National Laboratory |
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Publications
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Liu R, Qu W, Hu X, et al. (2022) Valence states of single Au atoms dictate the catalytic activity of Au/CeO(100). Chemical Communications (Cambridge, England) |
Fang X, Qu W, Qin T, et al. (2022) Abatement of Nitrogen Oxides via Selective Catalytic Reduction over Ce-W Atom-Pair Sites. Environmental Science & Technology. 56: 6631-6638 |
Hu X, Chen J, Qu W, et al. (2021) Sulfur-Resistant Ceria-Based Low-Temperature SCR Catalysts with the Non-bulk Electronic States of Ceria. Environmental Science & Technology |
Liu L, Yang X, Xie Y, et al. (2020) A Universal Lab-on-Salt-Particle Approach to 2D Single-Layer Ordered Mesoporous Materials. Advanced Materials (Deerfield Beach, Fla.). e1906653 |
Liu Z, Ma Z. (2020) Promoting the photocatalytic activity of Bi4Ti3O12 microspheres by incorporating iron Rsc Advances. 10: 19232-19239 |
Hu X, Chen J, Li S, et al. (2020) The Promotional Effect of Copper in Catalytic Oxidation by Cu-Doped α-MnO2 Nanorods Journal of Physical Chemistry C. 124: 701-708 |
Liu J, Liu Z, Zhang J, et al. (2020) AgI/Ag2Mo3O10·1.8H2O: A new photocatalyst working under visible light Materials Chemistry and Physics. 241: 122406 |
Chen Y, Liu Y, Mao D, et al. (2020) Facile cyclodextrin-assisted synthesis of highly active CuO-CeO2/MCF catalyst for CO oxidation Journal of the Taiwan Institute of Chemical Engineers |
Wang L, Wang J, Liu X, et al. (2020) FeCeOx with improved activity for catalytic reduction of NO with NH3 Journal of Physics and Chemistry of Solids. 142: 109472 |
Hu X, Li S, Chen Y, et al. (2019) Single-ion copper doping greatly enhances catalytic activity of manganese oxides via electronic interactions. Chemical Communications (Cambridge, England) |