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[11] J.X. Liu. Fe/Beta@SBA-15 nanostructure core-shell catalyst: Remarkable interface stable effect and propene ... .AIChE J. .2018 ,64 (11) :3967-3978
[12] J.X. Liu. Fe-Beta@CeO2 core-shell catalyst with tunable shell thickness for selective catalytic reduction o... .AIChE J .2017 ,63 (10) :4430-4441
[13] J.X. Liu. Design of MoFe/Beta@CeO2 catalysts with a core-shell structure and their catalytic performances f... .Appl. Catal. B-Environ. .2017 ,203
[14] J.X. Liu. Solvent-free rapid synthesis of porous CeWOx by mechanochemical self-assembly strategy for the ab... .J. Mater. Chem. A .2020 ,7 :6717-6731
[15] J.X. Liu. An aluminium hydroxide-mediated synthesis of mesoporous metal oxides by mechanochemical nanocasti... .J. Mater. Chem. A .2019 ,7 :22977-22985
[16] J.X. Liu†,L. Wang†,W. Song†. BiMOx semiconductor as catalysts for photocatalytic decomposition of N2O: A combination of experi... .ACS Sustain. Chem. Eng. .2019 ,7 (2) :2811-2820
[17] H. Cheng†. Green synthesis of mesoporous MnNbOx oxide by liquid induced self-assembly strategy for low-tempe... .Chem. Commun. .2019 ,55 :15073-15076
[18] J.X. Liu. Structure, synthesis, and catalytic properties of nanosize cerium-zirconium-based solid solutions... .Chinese J. Catal. .2019 ,40 (10) :1438-1487
[19] J.X. Liu. Synthesis of a chabazite-supported copper catalyst with full mesopores for selective catalytic re... .Chinese J. Catal. .2016 ,37 (5) :750-759
[20] L. Wang†,J.X. Liu†,W. Song†. Experimental and DFT insights of BiVO4 as effective photocatalytic catalyst for N2O decomposition .Chem. Eng. J. .2019 ,366 (15) :504-513
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