Energy & Fuels · 2019 · 19 citations · 47 references
Materials ScienceChemical EngineeringCatalytic ApplicationActive Niws PhaseEngineeringCatalytic ProcessDibenzothiophene CompoundsHeterogeneous CatalysisNanoheterogeneous CatalysisNanocatalysisCatalysisEdge AtomsChemistryNi-promoted Ws2 CatalystsEnhanced NumberCatalyst PreparationHybrid MaterialsDesulfurization
Ni-promoted WS2 catalysts are preferred over Ni/Co-promoted MoS2 catalysts due to their enhanced hydrodesulfurization (HDS) catalytic capability toward methylated dibenzothiophene compounds. However, it is challenging to prepare the active Ni-promoted WS2 phase with optimal number of edge/brim sites because WO3 and NiO have different sulfidation temperatures, which favors the formation of nonpromoted WS2 and NiSx phases instead of an active NiWS phase. Herein, we report a versatile method to prepare ultrasmall Ni-promoted WO3 nanoclusters (∼3 nm) supported over γ-Al2O3 followed by sulfidation. The prepared nanocatalysts possess increased hydrodesulfurization catalytic activity towards dibenzothiophene (conversion for the best catalyst was 92% at 580 K) and 4,6-dimethyldibenzothiophene (conversion for the best catalyst was 57% at 580 K) compared to the conventional wet impregnated catalyst possessing similar chemical composition. The increased catalytic activity is attributed to easier reducibility (confirmed by the temperature-programmed reduction method) and sulfidability (confirmed by high-resolution transmission electron microscopy (HRTEM)) of the catalyst. Furthermore, the catalyst did not display any decrease in activity till 24 h, showcasing the catalyst stability.
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Monodisperse FePt Nanoparticles and Ferromagnetic FePt Nanocrystal Superlattices
Shouheng Sun, C. B. Murray, D. Weller et al. · Science · 2000 · 6.1K citations