This research explores how transition metal molybdates change under hydrodeoxygenation, impacting their catalytic function.
Investigated the metal-dependent restructuring of molybdates under hydrodeoxygenation conditions.
Analyzed the formation of functional Mo-rich phases for catalytic efficiency.
Identified that restructuring yields more efficient Mo-rich phases.
Showed that these phases facilitate diverse deoxygenation reaction pathways.
Abstract
Transition metal molybdates undergo metal-dependent restructuring under HDO, yielding functional Mo-rich phases that mediate efficient deoxygenation through diverse reaction pathways.