论文著作:
[1] Ecofriendly β‑N‑butyl amino propionic acid as green corrosion inhibitor for N80 steel in CO2‑saturated brine water,J Mater Sci,2024,online
[2] The effect of citric acid on the microstructure and activity of MoP phosphide for dry reforming of methane, Phosphorus, Sulfur, and Silicon and the Related Elements, 2023, 198(5) :397-402.
[3] Development of a unique Niδ+ (0 < δ < 2) in NiMoP/Al2O3 catalyst for dry reforming of methane, 2023, 13(1): 178-186.
[4] First comparison of catalytic CO2 reduction to CO over molybdenum carbide, nitride and phosphide catalysts, CatalysisScience &Technology, 2023, 13: 6360–6365
[5] 稠油原位改质水热裂解催化剂的研究进展, 石油化工, 2023, 52(06) : 862-870.
[6]程序升温碳化法一步合成Cu/β-Mo2C催化剂及其RWGS反应性能研究,低碳化学与化工,2023, 48(4): 23-28.
[7] Novel highly active and stable alumina-supported cobalt nitride catalyst for dry reforming of methane, Applied Surface Science, 2022, 606: 154802-154811.
[8] Ni改性Mo2C/γ-Al2O3催化剂在逆水气变换反应中的应用, 精细化工, 2022, 39(6): 1190-1196.
[9] Synergism of 2-mercaptobenzimidazole and oleic imidazoline on corrosion inhibition of carbon steel in CO2-saturated brine solutions. Journal of Molecular Liquids, 2022, 368: 120645
[10] Novel synthesis of a NiMoP phosphide catalyst via carbothermal reduction for dry reforming of methane, Catalysis Science & Technology, 2021, 11(20): 6654–6658.
[11] A simple glucose route to nickel and cobalt phosphide catalysts, Phosphorus Sulfur and Silicon and the Related Elements, 2021, 196(9): 826-831.
[12]高温热稳定性Au/β-Mo2C催化剂的制备及在逆水煤气变换反应中的应用, 燃料化学学报, 2020, 48(3): 349-356.
[13] Binary and ternary transition metal phosphides for dry reforming of methane, React. Chem. Eng., 2020, 5(4), 719-727.
[14] Novel synthesis of a NiMoP phosphide catalyst in a CH4-CO2 gas mixture, 2019, 48(38): 14256-14260.
[15] Study on Hydrofining and Pour Point Depressing Tandem Technology for Catalyzing Diesel, Chemical Engineering Transactions, 2018, 64: 187-192.
[16] A Novel Self-Assembled Hierarchical-Structured Catalyst for the Diffusion of Macro-molecules,Australian Journal of Chemistry, 2016, 69(8): 856 – 864.
[17] Co/Cu-USY 分子筛制备及催化乙苯氧化性能, 化工进展, 2018, 37(6): 2249-2255.