论文著作:
已经发表学术论文46 篇,(SCI 收录40 篇、EI 收录6 篇),申请国内外发明专利31 件(中国23 件,PCT4 件,美国2 件,欧洲2 件)。
[1] Z. Liu*, & Ma, Z. et al., Promoter modified hydrophobic core–shell Fe-based catalysts for Fischer-Tropsch synthesis: Enhancing its performance in suppressing water gas shift reaction. Fuel 2024,374, 132485.
[2] Z. Liu, & Z.F. Yan, et al., Fabrication of 3D framework of KIT-6 with CuO NPs for catalytic reduction of 4-nitrophenol and methylene blue. J. Mol. Liq. 2024,400, 124541.
[3] Z. Liu*, & Z.F. Yan, et al., Fabrication of nanoconfined spaces of KIT-6 with small-sized SnO2 for enhanced oxidative desulfurization of fuel: Kinetics and thermodynamics. Sep. Purif. Technol. 2024,331, 125745.
[4] H. Sun & Z. Liu, Ru-based catalysts for efficient CO2 methanation: Synergistic catalysis between oxygen vacancies and basic sites. Nano Research 2023,16, 12153–12164.
[5] Z. Liu*, & Ma, Z., Electrospinning prepared nickel-based carbon fibers with enhanced adsorption capacity for adsorption desulfurization of fuels. Chemical Engineering Journal 2023,478, 147254.
[6] Z. Liu*, & Z.F. Yan, et al. Sn-doped nanoconfinements of SBA-15 for oxidative desulfurization: Kinetics and thermodynamics, Fuel, 346 (2023) 128372. IF=8.035
[7] Z. Liu*, & Z.F. Yan, et al., Magnetic Fe3O4@MIL-100(Fe) core-shells decorated with gold nanoparticles for enhanced catalytic reduction of 4-nitrophenol and degradation of azo dye, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 660 (2023) 130904. IF=5.518
[8] H. Sun & Z. Liu*, et al., XAS/DRIFTS/MS spectroscopy for time-resolved operando study of integrated carbon capture and utilisation process. Sep Purif Technol, 2022, 298: 121622. IF=9.136
[9] Z. Liu, & X.M. Liu, et al., Seeds induced Beta zeolite synthesis with low SDA for n-heptane catalytic cracking reaction. Catal Today, 405-406 (2022) 235-241. IF=6.562
[10] Z. Liu, & Z.F. Yan, et al., Dry gel assisting crystallization of bifunctional CuO–ZnO–Al2O3/SiO2–Al2O3 catalysts for CO2 hydrogenation. Biomass and Bioenergy, 2022, 163: 106525. IF=5.774
[11] G. Giordano, Z. Liu, & Z.F. Yan, et al., Passivated Surface of High Aluminum Containing ZSM-5 by Silicalite-1: Synthesis and Application in Dehydration Reaction. ACS Sustainable Chemistry & Engineering, 2022, 10(15): 4839-48. IF=9.224
[12] H. Li, & Z. Liu, et al., Deactivation behavior investigation on commercial precipitated iron Fischer–Tropsch catalyst for long time reaction. Journal of Porous Materials, 2022, 29: 307-15. IF=2.523
[13] Z. Liu, & Z.F. Yan, et al., Mother liquor induced preparation of SAPO-34 zeolite for MTO reaction. Catal Today, 2020, 358: 109-15. IF= 6.562
[14] F. Subhan, & Z. Liu, et al., Highly dispersive lanthanum oxide fabricated in confined space of SBA-15 for adsorptive desulfurization, Chemical Engineering Journal,2020, 384: 123271. IF=16.744
[15] C. Wang, & Z. Liu, et al., Dependence of Surface Tension on Surface Concentration in Ionic Surfactant Solutions and Influences of Supporting Electrolyte Therein, Tenside Surfactants Detergents, 56 (2019) 484-489.
[16] F. Subhan, & Z. Liu, et al.,Ammonia assisted functionalization of cuprous oxide within confined spaces of SBA-15 for adsorptive desulfurization, Chemical Engineering Journal, 339 (2018) 557-565.
[17] W. Xing, Z. Liu, & Z.F. Yan, et al., Revealing the impacting factors of cathodic carbon catalysts for Li-CO2 batteries in the pore-structure point of view, Electrochim. Acta, 311 (2019) 41-49.
[18] Z. Liu*, & Z.F. Yan, et al., Hydrothermal synthesis of beta zeolite from industrial silica sol as silicon source, Journal of Porous Materials, 26 (2019) 1017-1025.
[19] F. Subhan, & Z. Liu, et al. Facile functionalization of 3-D ordered KIT-6 with cuprous oxide for deep desulfurization, Chemical Engineering Journal, 330 (2017) 372-382.
[20] Y. Liu, Z. Liu, & XM Liu, et al., Promoter effect of heteroatom substituted AlPO-11 molecular sieves in hydrocarbons cracking reaction, J. Colloid Interface Sci., 528 (2018) 330-335.
[21] 贾智姣, 刘振, 等人 复合模板剂诱导合成SAPO-34分子筛及其MTO性能研究, 工业催化, 26 (2018) 50-55.
[22] F. Subhan , Z. Liu, & Z.F. Yan, et al. Confinement of mesopores within ZSM-5 and functionalization with Ni NPs for deep desulfurization, Chemical Engineering Journal, 354 (2018) 706-715.
[23] Z. Liu, & Z.F. Yan, et al. New strategy to prepare ultramicroporous carbon by ionic activation for superior CO2 capture, Chemical Engineering Journal, 337 (2018) 290-299.
[24] W. Xing, Z. Liu, & Z.F. Yan, et al., Functionalization of petroleum coke-based mesoporous carbon for synergistically enhanced capacitive performance, J. Mater. Res., 32 (2017) 1248-1257.
[25] F. Subhan, Z. Liu, & Z.F. Yan, et al. Unusual nickel dispersion in confined spaces of mesoporous silica by one-pot strategy for deep desulfurization of sulfur compounds and FCC gasoline, Chemical Engineering Journal, 321 (2017) 48-57.
[26] Y. Lyu, Z. Liu, & XM Liu, et al., Effect of ethanol on the surface properties and n-heptane isomerization performance of Ni/SAPO-11, Appl. Surf. Sci., 401 (2017) 57-64.
[27] Y. Liu, Z. Liu, & XM Liu, et al., Effect of lanthanum species on the physicochemical properties of La/SAPO-11 molecular sieve, J. Catal., 347 (2017) 170-184.
[28] P. Bai, Z. Liu, & Z.F. Yan, et al., Copolymer Assisted Self-Assembly of Nanoporous Mixed Oxides for Reactive Adsorption Desulfurization, Nanoscience and Nanotechnology Letters, 8 (2016) 931-937.
[29] Z. Liu, & Z.F. Yan, et al. Detailed investigation of N-doped microporous carbons derived from urea furfural resin for CO2 capture, Journal of Porous Materials, 22 (2015) 1663-1672.
[30] Z. Liu, & Z.F. Yan, et al.Product oriented oxidative bromination of methane over Rh/SiO2 catalysts, J. Nat. Gas Chem., 19 (2010) 522-529.
[31] Z. Liu, & Z.F. Yan, et al.Furfuralcohol Co-Polymerized Urea Formaldehyde Resin-derived N-Doped Microporous Carbon for CO2 Capture, Nanoscale Research Letters, 10 (2015) 333.
[32] Z. Liu, & Z.F. Yan, et al.Hierarchical SAPO-11 preparation in the presence of glucose, Mater. Lett., 154 (2015) 116-119.
[33] W. Xing, Z. Liu, Z. Liu, & Z.F. Yan, et al.Superhigh-rate capacitive performance of heteroatoms-doped double shell hollow carbon spheres, Carbon, 86 (2015) 235-244.
[34] C. Wang, & Z. Liu, et al., Using neutral impact collision ion scattering spectroscopy and angular resolved X-ray photoelectron spectroscopy to analyze surface structure of surfactant solutions, Colloid Polym. Sci., 293 (2015) 1655-1666.
[35] W. Xing, Z. Liu, & Z.F. Yan, et al. Studies in the capacitance properties of diaminoalkane-intercalated graphene, Electrochim. Acta, 148 (2014) 220-227.
[36] Z. Liu, & Z.F. Yan, et al., Hierarchical SAPO-11 synthesis by carbon nanoparticles templating method and its application on n-dodecane hydroisomerization, Advanced Materials Research, 912-914 (2014) 168-171.
[37] Z. Liu, & XP Zhou, et al., Tailoring acidity of HZSM-5 nanoparticles for methyl bromide dehydrobromination by Al and Mg incorporation, Nanoscale Research Letters, 9 (2014) 550.
[38] Z. Liu, & Z.F. Yan, et al. Synthesis of meso-SAPO-11 and its enhancement of isomerization in fluid catalytic cracking process, Appl Petrochem Res, 4 (2014) 389-394.
[39] Z. Liu, & Z.F. Yan, et al., Preparation of hierarchical SAPO-11 molecular sieve and its application for n-dodecane isomerization, Appl Petrochem Res, 4 (2014) 401-407.
[40] W. Xing, Z. Liu, & Z.F. Yan, et al., Superior capacitive performance of active carbons derived from Enteromorpha prolifera, Electrochim. Acta, 133 (2014) 459-466.
[41] Z. Liu, & Z.F. Yan, et al. Synthesis of hierarchical SAPO-11 for hydroisomerization reaction in refinery processes, Appl Petrochem Res, 4 (2014) 351-358.
[42] 刘振*, 阎子峰等人, 硬模板法制备微孔-介孔复合SAPO-11分子筛及其长链烷烃异构化反应研究, 中国石油大学学报(自然科学版), 38 (2014) 153-158.
[43] Z. Liu, & Z.F. Yan, et al., The fabrication of porous N-doped carbon from widely available urea formaldehyde resin for carbon dioxide adsorption, J. Colloid Interface Sci., 416 (2014) 124-132.
[44] Z. Liu, & Z.F. Yan, et al., Facial synthesis of N-doped microporous carbon derived from urea furfural resin with high CO2 capture capacity, Mater. Lett., 117 (2014) 273-275.
[45] Z. Liu, & Z.F. Yan, et al., Hierarchical meso-microporous SAPO-11 synthesis from acid assistant dealuminzation: Effect of acid strength, Applied Mechanics and Materials, 313 (2013) 219-222.
[46] Y. Wang, Z. Liu, & Z.F. Yan, et al., Synthesis of hierarchically ordered egg-tray-like macroporous TiO2–SiO2 nanocomposites with ordered mesoporous walls, Mater. Lett., 111 (2013) 173-176.