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[41]HJL.Utilization of waste vanadium-bearing resources in the preparation of rare-earth vanadate catalysts for semi-hydrogenation of alpha,beta-unsaturated aldehydes.FRONTIERS OF CHEMICAL SCIENCE AND ENGINEERING,2021,
[42]HJL.Synthesis of ZnZrOx&bio-SAPO-34 bifunctional catalysts derived from metal organic frameworks and rice husk template for CO2 hydrogenation to light olefins.Huagong Jinzhan/Chemical Industry and Engineering Progress,2021,41(3):1298-1308.
[43]HJL.Thermal decomposition kinetics of M-BTC (M = Cu, Co, Zn, and Ce) and M-BTC/Pt composites under oxidative and reductive environments.Chemical Engineering Journal,2022,450
[44]HJL,Green synthesis of microspherical-confined nano-Pd/In2O3 integrated with H-ZSM-5 as bifunctional catalyst for CO2 hydrogenation into dimethyl ether: A carbonized alginate templating strategy.Separation and Purification Technology,2022,297
[45]HJL.Microorganism-Templated Nanoarchitectonics of Hollow TiO2-SiO2 Microspheres with Enhanced Photocatalytic Activity for Degradation of Methyl Orange.NANOMATERIALS,2021,12(9):
[46]HJL.Marine shrimp/tin waste as a negative electrode for rechargeable sodium-ion batteries.Journal of Cleaner Production,2022,359
[47]HJL.Fabrication of multi-layered Co3O4/ZnO nanocatalysts for spectroscopic visualization: Effect of spatial positions on CO2 hydrogenation performance.Fuel,2022,321
[48]HJL,Biomimetic Au/CeO2 Catalysts Decorated with Hemin or Ferrous Phthalocyanine for Improved CO Oxidation via Local Synergistic Effects.ISCIENCE,2020,23(12):
[49]HJL,Pd Supported on MIL-68(In)-Derived In2O3 Nanotubes as Superior Catalysts to Boost CO2 Hydrogenation to Methanol.ACS CATALYSIS,2020,10(22):13275-13289.
[50]HJL,Preparation of Integrated CuO/ZnO/OS Nanocatalysts by Using Acid-Etched Oyster Shells as a Support for CO2 Hydrogenation.ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2020,8(18):7162-7173.
total208 5/21
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