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吴沛文
Wu Peiwen
副教授
博士生导师 硕士生导师
学位:博士
性别:男
毕业院校:江苏大学
学历:博士研究生毕业
在职信息:在本单位任职
所在单位:化学化工学院
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吴沛文. Magnetically recyclable high-entropy metal oxide catalyst for aerobic catalytic oxidative desulfu.... Chinese Journal of Catalysis
吴沛文. Fe3N nanoparticles confined in h-BN for Ultra-Deep oxidative desulfurization using molecular oxyg.... CHEMICAL ENGINEERING SCIENCE
吴沛文. Deep extractive denitrogenation with Cu-based ionic liquids and mechanistic insights. AICHE JOURNAL
吴沛文. Enthalpy-driven synthesis of magnetic high entropy oxide catalyst for efficient oxidative desulfu.... Separation and Purification Technology
吴沛文. Thermally Stable High-Entropy Layered Double Hydroxides for Advanced Catalysis. SMALL
吴沛文. 3D printing of hierarchically porous lightweight activated carbon/alumina monolithic adsorbent fo.... Separation and Purification Technology
吴沛文. High entropy materials for catalysis: A critical review of fundamental concepts and applications. NANO ENERGY
吴沛文. High-entropy zeolitic imidazolate framework for efficient oxidative desulfurization of diesel fue.... FUEL
吴沛文. An ultra-stable high entropy metal nitride for aerobic oxidative desulfurization and source recov.... Chemical Engineering Journal
吴沛文. Few-layered hexagonal boron nitride nanosheets stabilized Pt NPs for oxidation promoted adsorptiv.... Green Energy and Environment
吴沛文. Understanding oxygen doping effects on boron nitride catalysis for efficient oxidative desulfuriz.... APPLIED CATALYSIS B-ENVIRONMENT AND ENERGY
吴沛文. Engineering 3D-printed aqueous colloidal ceramic slurry for direct ink writing. Green Chemical Engineering
吴沛文. Tailoring Type III Porous Ionic Liquids for Enhanced Liquid-Liquid Two-Phase Catalysis. Advanced Science
吴沛文. 3D printing of the multifunctional fixed-bed reactor and matched 3D-CeO2/ATP monolithic adsorbent.... Chemical Engineering Journal
吴沛文. Phosphomolybdic acid encapsulated in ZIF-8-based porous ionic liquids for reactive extraction des.... Inorganic Chemistry Frontiers
吴沛文. Stable Au nanoparticles confined in boron nitride shells for optimizing oxidative desulfurization. Nano Research
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