论文著作:
[12] L. Zou, M. Chen, Q. Zhang, Q. Mao, Y. Huang,* and Z. Liang*, “Pd/UIO-66/sepiolite: Toward highly efficient dual-supported Pd-based catalyst for dehydrogenation of formic acid at room temperature,” Journal of Catalysis 388(2020), 66-76.
[11] Q. Zhang, Z. Zhu, X. Zhang, P. Li, Y. Huang,* X. Luo, and Z. Liang*, “Amine-functionalized sepiolite: Toward highly efficient palladium nanocatalyst for dehydrogenation of additive-free formic acid,” International Journal of Hydrogen Energy 44(2019), 16707-16717.
[10] L. Zou, Q. Zhang Y. Huang,* X. Luo, Z. Liang*, et al “Highly Efficient Hydrogen Generation from a Formic Acid/Triethanolamine System Using a Pd-Based Catalyst and Correlation for Apparent Activation Energy Estimation,” Industrial & Engineering Chemistry Research 58(2019), 22984-22995.
[9] Y. Zhou, Y. Huang,* B. Jin, X. Luo, and Z. Liang, “Pd Nanoclusters-Based Catalysts with Schiff Base Modifying Carrier for CO2 Hydrogenation to Formic Acid,” Industrial & Engineering Chemistry Research 58(2019), 44-52.
[8] Y. Huang, Y. Ma, Y. Cheng, L. Wang, X. Li, “Active ruthenium catalysts prepared by Cacumen Platycladi leaf extract for selective hydrogenation of maleic anhydride ,” Applied Catalysis A: General 495(2015), 124-130.
[7] Y. Huang, Y. Ma, Y. Cheng, L. Wang, X. Li, “Supported nanometric platinum-nickel catalysts for solvent-free hydrogenation of tetralin,” Catalysis Communications 69(2015), 55-58.
[6] Y. Huang, Y. Ma, Y. Cheng, L. Wang, X. Li, “Biosynthesis of ruthenium nanoparticles supported on nitric acid modified activated carbon for liquid-phase hydrogenation of 2,2,4,4-tetramethylcyclobutane-1,3-dione ,” Catalysis Communications 72(2015), 20-23.
[5] Y. Huang, Y. Ma, Y. Cheng, L. Wang, X. Li, “Dimethyl Terephthalate Hydrogenation to Dimethyl Cyclohexanedicarboxylates over Bimetallic Catalysts on Carbon Nanotubes,” Industrial & Engineering Chemistry Research 53(2014), 4604-4613.
[4] C. Li, Y Huang, X. Sun, R. Gao, F. Zeng, PaitoonTontiwachwuthikula Z. Liang. “Rheological properties study of foam fracturing fluid using CO2 and surfactant,” Chemical Engineering Science 170 (2017) 720-730.
[3] Y. Ma, Y. Huang, Y. Cheng, L. Wang, X. Li, “Biosynthesized ruthenium nanoparticles supported on carbon nanotubes as efficient catalysts for hydrogenation of benzene to cyclohexane: An eco-friendly and economical bioreduction method,” Applied Catalysis A: General 484(2014), 154-160.
[2] Y. Ma, Y. Huang, Y. Cheng, L. Wang, X. Li, “Selective liquid-phase hydrogenation of maleic anhydride to succinic anhydride on biosynthesized Ru-based catalysts,” Catalysis Communications 57(2014), 40-44.
[1] H. Zhou, Y. Huang, Y. Cheng, L. Wang, X. Li, “Hydrogenation of methyl methacrylate under mild conditions using biosynthesis Ru catalyst,” Journal of Industrial and Engineering Chemistry 47(2016) 221-227.