Acetylene Semi‐Hydrogenation by Photocatalysis
Photocatalytic acetylene semi‐hydrogenation is an emerging light‐driven route to polymer‐grade ethylene, offering a mild alternative to energy‐intensive thermocatalysis. By replacing H2 co‐feed with water or other proton sources, these systems can achieve high selectivity under ambient conditions.
Anna Fortunato +6 more
wiley +1 more source
Involvement of Nitric Oxide in TRPV4-Induced Relaxations of Mouse and Human Pulmonary Arteries. [PDF]
Bajoriūnas V +6 more
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Outstanding catalytic results for NH3 decomposition for H2 production were obtained with metallic Ru, Rh, and RuRh nanoparticle‐exsolved CeO2‐based catalysts. Significant lower amounts of available superficial metallic fractions were needed in comparison to conventional Ru‐impregnated materials.
Andrés López‐García +8 more
wiley +1 more source
Radiotherapy meets anticancer metallodrugs. [PDF]
Zhang S +5 more
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Carbonaceous supports for Schiff base metal complexes: Strategies for enhanced catalytic efficiency. [PDF]
Maurya A.
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A honeysuckle-decorated nanoimmunomodulator hijacks Macrophage-BMSC crosstalk to promote arthritic regeneration. [PDF]
Ma Y +11 more
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Modulation strategies for acidic oxygen evolution catalysts. [PDF]
Teng F, Wang Z, Guan J.
europepmc +1 more source
Combined experimental and theoretical investigation of the (benzoimidazol-2-yl)-methanone ligand and its Ru(III) complex: structural elucidation, stability determination, corrosion inhibition, energy storage and bioactivity applications. [PDF]
Shilkamy HAE +7 more
europepmc +1 more source
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Ruthenium (Ru) has been heated in air in the range of 100-400°C in order to investigate its usefulness for electrical contacts. It has been found that for temperatures up to 200°C, Ru oxidizes to produce a film which causes high contact resistance. For temperatures >300°C, Ru forms an oxide film, RuO 2 , which has low contact resistance.
S. Sharma, L. Hines
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Growth of Ruthenium and Ruthenium oxide nanoplates
MRS Proceedings, 2011ABSTRACTBy carefully manipulating and controlling the growth conditions, Ruthenium (Ru) and ruthenium oxide (RuO2) two-dimensional (2-D) nanostructure were self-assembled into a stack of plates on indium tin oxide coated glass substrate. The nanoplates were grown in a horizontal hot-wall metalorganic chemical vapor deposition (MOCVD) from ruthenocene ...
Lamartine Meda, Geoffrey D. Stevens
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