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[1]wanghongli,水稻秸秆改性碳担载PdAu纳米催化剂对乙醇电氧化性能研究.长春工业大学学报,2023:3
[2]wanghongli,AuPd Nanocatalysts Supported on Citric Acid-Modified Boron Nitride to Boost Hydrogen Generation from Formic Acid Dehydrogenation.ACS Applied Nano Materials,2023,6(5):1
[3]wanghongli,Efficient catalytic hydrogen generation from formic acid dehydrogenation on ultrafine PdAu nanoparticles supported on modified carbon derived from rice straw.The European Physical Journal Applied Physics,2023,98(15):1
[4]wanghongli,Noble-metal-free Co@Co2P/N-doped carbon nanotube polyhedron as an efficient catalyst for hydrogen generation from ammonia borane.International Journal of Hydrogen Energy,2021,46(13):1
[5]wanghongli,功能化石墨烯担载型 AuPd 纳米催化剂增强甲酸制氢反应.Journal of Inorganic Materials,2022,37(5):2
[6]Noble-metal-free Co@Co2P/N-doped carbon nanotube polyhedron as an efficient catalyst for hydrogen generation from ammonia borane.Int. J. Hydrogen Energy,2021,46:9030-9039
[7]wanghongli,Ultrafine AuPd nanoparticles supported on amine functionalized monochlorotriazinyl β-cyclodextrin as highly active catalysts for hydrogen evolution from formic acid dehydrogenation.Catalysis Science&Engineering,2020:1
[8]wanghongli,【SCI】Enhancing formic acid dehydrogenation for hydrogen production with the metal/organic interface.Applied Catalysis B: Environmental,2019:1
[9]wanghongli,zhaozhankui,赵占奎.【SCI通讯】CrPd nanoparticles on NH2-functionalized metal-organic framework as asynergistic catalyst for efficient hydrogen evolution from formic acid.Chemical Engineering Journal,2018,361:1
[10]王虹力,Complete dehydrogenation of N2H4BH3 over noble-metal-free Ni0.5Fe0.5-CeOx/MIL-101 with high activity and 100% H2 selectivity.Adv. Energy Mater.,2018,8:1800625
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