论文著作:
[1] Y. Li, H. Ren, D. Sun*, X. Zhao*, Vapor-phase deoxydehydration of 1,2-propanediol to form propylene over Cu-loaded H3PO4/SiO2-Al2O3 catalyst, Appl. Catal. A, Gen. 2024, 674: 119619.
[2] D. Sun*, S. Zhao, H. Ren, Y. Li, K. Zhang, S. Sato*, Decarbonylative dehydration of biomass-derived γ-valerolactone to form 1,3-butadiene catalyzed by H-ZSM-5, Chem. Lett. 2023, 52: 569–572.
[3] K. Zhang, Y. Su, G. Wang, D. Sun*, S. Sato*, Enhanced catalytic performance of H3PO4/SiO2 by doping WO3 and Ag for the vapor-phase dehydration of 1,2-propanediol to form propanal, Appl. Catal. A, Gen. 2022, 633: 118509.
[4] Y. Li, H. Ren, D. Sun*, X. Zhao*, S. Sato*, Hydrodeoxygenation of 1,2-decanediol to produce 1-decanol over Cu/SiO2-Al2O3 catalyst, Appl. Catal. A, Gen. 2022, 647: 118905.
[5] Y. Li, D. Sun*, X. Zhao*, Y. Yamada, S. Sato, Control of coke deposition in solid acid catalysis through the doping of transition metal combined with the assistance of H2: A review, Appl. Catal. A, Gen. 2021, 626: 118340.
[6] D. Sun*, Y. Li, C. Yang, Y. Su, Y. Yamada, S. Sato*, Production of 1,3-butadiene from biomass-derived C4 alcohols, Fuel Proces. Technol. 197 (2020) 106193
[7] D. Sun, T. Misu, Y. Yamada, S. Sato*, Advantages of using Cu/SiO2 catalyst for vapor-phase dehydrogenation of 1-decanol into decanal Appl. Catal. A, Gen. 2019, 582: 117109.
[8] D. Sun, R. Takano, Y. Yamada, S. Sato*, Vapor-phase isomerization of 3-pentenal over amorphous SiO2 catalyst, Appl. Catal. A, Gen. 2019, 576: 65-73.
[9] D. Sun, Y. Yamada, S. Sato*, W. Ueda*. Glycerol as a potential renewable raw material for acrylic acid production. Green Chem., 2017, 19: 3186-3213.
[10] D. Sun, Y. Yamada, S. Sato*, W. Ueda*. Glycerol hydrogenolysis into useful C3 chemicals. Appl. Catal. B: Environ., 2016, 193: 75-92.