相关文献:
1.Liu B, Huang N, Wang Y, Lan X, Wang T. Promotion of inorganic phosphorus on Rh catalysts in styrene hydroformylation: Geometric and electronic effects, ACS Catalysis, 2021: 11: 1787-1796.
2.Lan XC, Wang TF*, Highly Selective Catalysts for the Hydrogenation of Unsaturated Aldehydes: A Review, ACS Catalysis, 2020, 10: 2764-2790. (ESI 高被引)
3.Wang HJ, Lan XC, Wang SQ, Ali B, Wang TF*, Selective hydrogenation of 2-pentenal using highly dispersed Pt catalysts supported on ZnSnAl mixed metal oxides derived from layered double hydroxides, Catalysis Science & Technology, 2020, 10: 1106-1116
4.Zhang HH, Sayyar A, Wang YL, Wang TF*, Generality of the CFD-PBM coupled model for bubble column simulation, Chemical Engineering Science, 2020, 219: 115514, DOI: 10.1016/j.ces.2020.115514.
5.Lan XC, Xue KZ, Wang TF*, Combined synergetic and steric effects for highly selective hydrogenation of unsaturated aldehyde, Journal of Catalysis, 2019, 372: 49-60.
6.Jia P, Lan XC, Li XD, Wang TF*, Highly selective hydrogenation of furfural to cyclopentanone over a NiFe bimetallic catalyst in a methanol/water solution with a solvent effect, ACS Sustainable Chemistry & Engineering, 2019, 7: 15221-15229.
7.Lan XC, Huang N, Wang JF, Wang TF*, A general and facile strategy for precisely controlling the crystal size of monodispersed metal-organic frameworks via separating the nucleation and growth, Chemical Communications, 2018, 54: 584-587. (Cover)
8.Wang HJ, Li XD, Lan XC, Wang TF*, Supported ultrane NiCo bimetallic alloy nanoparticles derived from bimetal-organic frameworks: a highly active catalyst for furfuryl alcohol hydrogenation, ACS Catalysis, 2018, 8: 2121-2128.
9.Li XD, Yan BH, Yao SY, Kattel S, Chen JG*, Wang TF*, Oxidative dehydrogenation and dry reforming of n-butane with CO2 over NiFe bimetallic catalysts, Applied Catalysis B: Environmental, 2018, 231: 213-223.
10.Jia P, Lan XC, Li XD, Wang TF*, Highly active and selective NiFe/SiO2 bimetallic catalyst with optimized solvent effect for the liquid-phase hydrogenation of furfural to furfuryl alcohol, ACS Sustainable Chemistry & Engineering, 2018, 6: 13287-13295.
11.Yang GY, Zhang HH, Luo JJ, Wang TF*, Drag force of bubble swarms and numerical simulations of a bubble column with a CFD-PBM coupled model, Chemical Engineering Science, 2018, 192: 714-724.
12.Guo KY, Wang TF*, Liu YF, Wang JF, CFD-PBM simulations of a bubble column with different liquid properties, Chemical Engineering Journal, 2017, 329: 116-127.
13.Yang GY, Guo KY, Wang TF*, Numerical simulation of the bubble column at elevated pressure with a CFD-PBM coupled model, Chemical Engineering Science, 2017, 170: 251-262.
14.Liu F, Wang TF*, Zheng YY, Wang JF, Synergistic effect of Bronsted and Lewis acid sites for the synthesis of polyoxymethylene dimethyl ethers over highly efficient SO42-/TiO2 catalysts, Journal of Catalysis, 2017, 355: 17-25.
15.Chang K, Wang TF*, Chen JG*, Hydrogenation of CO2 to methanol over CuCeTiOx catalysts, Applied Catalysis B: Environmental, 2017, 206: 704-711.
16.Li XD, Jia P, Wang TF*, Furfural: a promising platform compound for sustainable production of C4 and C5 Chemicals, ACS Catalysis, 2016, 6: 7621-7640. (ESI 高被引)
17.Zhang Q, Liu YF, Chen TW, Yu XY, Wang JF, Wang TF*, Simulations of methane partial oxidation by CFD coupled with detailed chemistry at industrial operating conditions, Chemical Engineering Science, 2016, 142: 126-136.
18.Li XD, Wan WM, Kattel S, Chen JG*, Wang TF*, Selective hydrogenation of biomass-derived 2(5H)-furanone over Pt-Ni and Pt-Co bimetallic catalysts: From model surfaces to supported catalysts, Journal of Catalysis, 2016, 344: 148-156.
19.Li XD, Lan XC, Wang TF*, Highly selective catalytic conversion of furfural to gamma-butyrolactone, Green Chemistry, 2016, 18: 638-642. (Back cover)
20.Xing CT, Wang TF*, Guo KY, Wang JF, A unified theoretical model for breakup of bubbles and droplets in turbulent flows, AIChE Journal, 2015, 61: 1391-1403.