Current location - Trademark Inquiry Complete Network - Tian Tian Fund - Scientific research in H.X. Dai
Scientific research in H.X. Dai
He has published more than 80 English SCI papers in international authoritative catalytic academic journals (including 36 papers with impact factors above 3.0), conference papers 12 and Chinese papers 10 in domestic core academic journals. Controllable preparation, characterization and catalytic performance of highly dispersed MOx/ mesoporous molecular sieve catalyst for oxidative dehydrogenation of butane (general project of National Natural Science Foundation of China)

Study on controllable preparation, characterization and catalytic performance of MOx/RE0.6Zr0.4-xYxO2 catalyst for catalytic combustion of natural gas (key project funded by Ministry of Personnel and Beijing high-level returned overseas students)

Controllable preparation, catalytic performance and product development of porous perovskite-type oxides (Class B key project of Beijing Natural Science Foundation)

Large-scale Study on Solar Photocatalytic Hydrogen Production —— Hydrogen production by photoelectrochemical cells (a sub-project of "973 Plan" of Ministry of Science and Technology)

Using solar energy to catalyze the directional transformation of organic matter ("Beijing Municipal Administration College Top-notch Innovative Talents Selection Plan" project)

Controllable Preparation, Characterization and Catalytic Performance of MOx/MoOx/ Mesoporous Molecular Sieve Catalyst for Butane Oxidative Dehydrogenation (Research Start-up Fund for Returned Overseas Students of Ministry of Education)

Synthesis and Characterization of Organic-inorganic Skeleton Porous Materials for Efficient Selective Adsorption and Separation of N2, CO2 and CH4 (National "863" Project)

Controllable preparation of nano-MOY/3domla1-xsrxmo3 (m = Cr, Mn, Co) and its catalytic performance for VOCs oxidation (General Project of National Natural Science Foundation of China)

Preparation and Performance Study of Porous MOx/BiVO4 _ 4 Visible Light Catalyst for Efficient Photocatalytic Degradation of Volatile Organic Compounds (Serving Beijing Innovative Talents Training Project)