Area of research
Catalysis · Materials Chemistry
Research interest
Research interests include Catalysts for Methane Reforming, Catalytic Processes in Materials Science, Catalysis and Hydrodesulfurization Studies, and Chemical Synthesis and Reactions.
Accelerated Oxygen Dual Activation and Acetic Acid Activation for Hydrogen Production via Autothermal Reforming of Acetic Acid
Samarium-Promoted Layered La<sub>2</sub>NiO<sub>4</sub> Perovskite for Hydrogen Production via the Auto-Thermal Reforming of Acetic Acid.
Mullite-like SmMn<sub>2</sub>O<sub>5</sub>-Derived Composite Oxide-Supported Ni-Based Catalysts for Hydrogen Production by Auto-Thermal Reforming of Acetic Acid.
Interface of Ni-MgCr<sub>2</sub>O<sub>4</sub> Spinel Promotes the Autothermal Reforming of Acetic Acid through Accelerated Oxidation of Carbon-Containing Intermediate Species
Ce<sub>1−<i>x</i></sub>Sr<sub><i>x</i></sub>O<sub>2−<i>δ</i></sub> solid solution supports cobalt-based catalysts for hydrogen production <i>via</i> auto-thermal reforming of acetic acid
Y-Zr-O solid solution supported Ni-based catalysts for hydrogen production via auto-thermal reforming of acetic acid
Auto-thermal reforming of acetic acid for hydrogen production by ordered mesoporous Ni-xSm-Al-O catalysts: Effect of samarium promotion
Auto-thermal reforming of acetic acid over hydrotalcites-derived co-based catalyst: A stable and anti-coking Co/Sr-Alx-O catalyst