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Highly dispersed Cu-ZnO-ZrO2 nanoparticles on hydrotalcite adsorbent as efficient composite catalysts for CO2 hydrogenation to methanol Fang X, Men Y, Wu F, Zhao Q, Singh R, Xiao P, Liu L, Du T, Webley PA Korean Journal of Chemical Engineering, 38(4), 747, 2021 |
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SiO2 supported highly dispersed Pt atoms on LaNiO3 by reducing a perovskite-type oxide as the precursor and used for CO oxidation Zhang SR, An K, Fang CY, Zhang ZY, Liu Q, Lu SH, Liu Y Catalysis Today, 355, 222, 2020 |
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Organic acid-assisted preparation of highly dispersed Co/ZrO2 catalysts with superior activity for CO2 methanation Li WH, Liu Y, Mu MC, Ding FS, Liu ZM, Guo XW, Song CS Applied Catalysis B: Environmental, 254, 531, 2019 |
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Highly dispersed and stable Ni nanoparticles confined by MgO on ZrO2 for CO2 methanation Tan JJ, Wang JM, Zhang ZY, Ma Z, Wang LH, Liu Y Applied Surface Science, 481, 1538, 2019 |
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Ultrasmall NiS decorated HNb3O8 nanosheeets as highly efficient photocatalyst for H-2 evolution reaction Xia YZ, Liang SJ, Wu L, Wang XX Catalysis Today, 330, 195, 2019 |
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Phosphotungstic acid immobilized on mixed-ligand-directed UiO-66 for the esterification of 1-butene with acetic acid to produce high-octane gasoline Yan LL, Duan TT, Huang TT, Zhao BB, Fan Y Fuel, 245, 226, 2019 |
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An environmentally friendly wide temperature CeWTiOx catalyst with superior performance for the selective catalytic reduction NOx with NH3 Xiaosheng H, Guodong Z, Fang D, Zhicheng T Journal of Industrial and Engineering Chemistry, 69, 66, 2019 |
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An anionic surfactant-assisted equilibrium adsorption method to prepare highly dispersed Fe-promoted Ni/Al2O3 catalysts for highly selective mercaptan removal Huang TT, Peng QY, Shi WJ, Xu JD, Fan Y Applied Catalysis B: Environmental, 230, 154, 2018 |
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Decamethonium bromide-dispersed palladium nanoparticles on mesoporous HZSM-5 zeolites for deep hydrodesulfurization Xu JD, Guo YF, Huang TT, Fan Y Chemical Engineering Journal, 333, 206, 2018 |
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Reduced graphene oxide supported V2O5-WO3-TiO2 catalysts for selective catalytic reduction of NOx Lee MW, Ye BR, Jeong BR, Chun HY, Lee DH, Park SS, Lee HS, Kim HD Korean Journal of Chemical Engineering, 35(10), 1988, 2018 |