Keywords: روتنیوم ; Hyper-crosslinked polymers; Ruthenium; Hydrogen evolution reaction; Ammonia-borane; Hydrolysis;
مقالات ISI روتنیوم (ترجمه نشده)
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Keywords: روتنیوم ; Metalladithiolene complex; Ruthenium; Hydride; Carbon monoxide; Carbon dioxide;
Keywords: روتنیوم ; Asymmetric reduction; Homogenous catalysis; Ruthenium; TsDPEN; Phthalimide; Amino alcohol;
Keywords: روتنیوم ; Graphite; Dysprosium; Ruthenium; Copper; Intercalation;
Keywords: روتنیوم ; Oxidation; HMF; DFF; MnCo2O4; Ruthenium;
Keywords: روتنیوم ; Ruthenium; Cinnamaldehyde; Hydrogenation; DFT; Fullerene;
Keywords: روتنیوم ; Ruthenium; Transition metal; Transition metal oxide NPs; Hydrogenation; Synergetic effect;
Keywords: روتنیوم ; Picene; Iron; Ruthenium; Arene complexes; Sandwich complexes;
Keywords: روتنیوم ; Aminolysis; ROMP/CM; End-functionalized polymers; Imidazole; Ruthenium; ADMET; Acyclic diene metathesis polymerization; COD; Cyclooctadiene; COE; Cyclooctene; CM; Cross-metathesis; CNF; Cyclic non-functional polycyclooctene; CTA; Chain-transfer agent; DF;
Keywords: روتنیوم ; Fischer-Tropsch; Ruthenium; Nanoreactors; Chain length distribution;
Keywords: روتنیوم ; Clusters; Water impregnation; Single source precursor; Ruthenium; Platinum; Carbon;
Keywords: روتنیوم ; Tantalum; Niobium; Molybdenum; Tungsten; Ruthenium; Palladium; Alloy; Melting; Thermomechanical; Corrosion; Hydrogen; Embrittlement; Mechanical properties; Modeling;
Keywords: روتنیوم ; Ruthenium; Enyne; Cycloaddition; DFT;
Keywords: روتنیوم ; Ruthenium; Iridium; Chalcogenolato-bridge; Boron;
Keywords: روتنیوم ; Direct electrodeposition; Ionic liquid; Ruthenium; Solvent extraction;
Keywords: روتنیوم ; Bio-oil; Hydrodeoxygenation; Acetophenone; Sulfonated carbon; Ruthenium;
Keywords: روتنیوم ; hydrotreating; hydrodeoxygenation; ruthenium; tungstate-zirconia; palladium;
Keywords: روتنیوم ; Half-sandwich; Ruthenium; Complex; Catalyst; Nitroarene reduction;
Keywords: روتنیوم ; Carbonyl clusters; Ferrocene; Osmium; Ruthenium; Copolymers;
Keywords: روتنیوم ; Ruthenium; Catalytic hydrolysis; Hydrogen generation; Ammonia borane;
Keywords: روتنیوم ; Furfural; Furfuryl alcohol; Hydrogenation; Ruthenium; Reduced graphene oxide; Nitrogen doped reduced graphene oxide;
Keywords: روتنیوم ; Inulin; Magnetically recoverable catalysts; Hydrolytic hydrogenation; Mannitol; Ruthenium;
Keywords: روتنیوم ; Ordered mesoporous N-doped carbon; Ruthenium; Selective hydrogenation; Adsorption; Quinoline;
Keywords: روتنیوم ; Aziridines; Nitrene reagents; Alkenes; Homogenous catalysis; Iron; Ruthenium;
Keywords: روتنیوم ; Ruthenium; Silicon; Immersion deposition; Electrochemical deposition; UV-vis spectroscopy;
Keywords: روتنیوم ; Geochemical exploration; Chromite; Ruthenium; Ni-Cu-PGE sulfide deposits; Laser ablation ICP-MS;
Nanosecond transient absorption spectroscopy of a Ru polypyridine phenothiazine dyad
Keywords: روتنیوم ; Ruthenium; Polypyridene; Phenothiazine; Transient absorption;
Keywords: روتنیوم ; Asymmetric catalysis; Ruthenium; Hydride transfer; Multi-substrate screening; Aliphatic ketones;
Keywords: روتنیوم ; Ruthenium; Sodium hypochlorite; Chemical mechanical planarization; Etching;
Keywords: روتنیوم ; Ruthenium; Formic acid; Decomposition; Hydrogen; Carbon dioxide;
Half-sandwich ruthenium complexes with oxygen-nitrogen mixed ligands as efficient catalysts for nitrile hydration reaction
Keywords: روتنیوم ; Half-sandwich; Ruthenium; Complex; Catalyst; Nitrile;
Keywords: روتنیوم ; Carbon nanotubes; Confined catalysis; Ruthenium; Selective hydrogenation; Cinnamaldehyde; Selectivity modulation;
Keywords: روتنیوم ; Critical raw materials; Spent nuclear fuel; Recycling; Rare earths; Ruthenium;
Keywords: روتنیوم ; Ruthenium; Pincer complexes; Homogeneous catalysis; Ester hydrogenation;
Alumina nanofiber-stabilized ruthenium nanoparticles: Highly efficient catalytic materials for hydrogen evolution from ammonia borane hydrolysis
Keywords: روتنیوم ; Ammonia borane; Ruthenium; Alumina nanofibers; Hydrogen generation;
Effect of the thickness of the anode electrode catalyst layers on the performance in direct methanol fuel cells
Keywords: روتنیوم ; Direct methanol fuel cell (DMFC); Platinum; Ruthenium; Spreading; Catalyst loading; Layers thickness;
Keywords: روتنیوم ; Rotaxanes; Host-guest chemistry; Ruthenium; Porphyrins; Carbenes; CH insertion;
Pyridyl azine Schiff-base ligands exhibiting unexpected bonding modes towards ruthenium, rhodium and iridium half-sandwich complexes: Synthesis and structural studies
Keywords: روتنیوم ; Ruthenium; Rhodium; Iridium; Azine schiff-base ligands;
Keywords: روتنیوم ; Ruthenium; Double-active sites; Cooperative effect; Catalytic transfer hydrogenation; Ethyl levulinate;
Keywords: روتنیوم ; Ammonia decomposition; H2 generation; Cobalt; Ruthenium; Carbon;
Keywords: روتنیوم ; Ammonia synthesis; Hydrogen carrier; Ruthenium; Perovskite-type oxides;
Isolation of ruthenium formyl complexes: Insight into the metal-mediated cleavage reaction of carbon-carbon triple bond
Keywords: روتنیوم ; Tris(pyrazolyl)borato; Ruthenium; Propargylic alcohol; Vinyl; Formyl;
Keywords: روتنیوم ; Hydrodeoxygenation; HDO; Anisole; Platinum; Ruthenium; Iron; Oxophilicity; Density functional theory; DFT; Phenolics;
Metathesis of renewable polyene feedstocks - Indirect evidences of the formation of catalytically active ruthenium allylidene species
Keywords: روتنیوم ; Polyenes; Metathesis; Ruthenium; Green chemistry; Allylidene complexes;
Keywords: روتنیوم ; Phosphine; Pyrazole; Ruthenium; Transfer hydrogenation; Bifunctional catalysis;
Polyelectrochromism and electronic coupling in vinylruthenium-modified carbazoles
Keywords: روتنیوم ; Ruthenium; Electrochemistry; Spectroelectrochemistry; Electrochromism; Quantum chemistry;
High-nuclearity ruthenium carbonyl cluster chemistry. 9. Ligand substitution at decaruthenium carbonyl clusters
Keywords: روتنیوم ; Ruthenium; High-nuclearity clusters; Kinetics; X-ray structure;
Keywords: روتنیوم ; Ruthenium; Volatilization; Iron oxide; Catalyst deactivation; Three-way catalyst;
Keywords: روتنیوم ; ZnO nanoflower; ECL; Ruthenium; FTO glass; Electrochemical luminescence;
Synthesis and characterization of novel rhodium and ruthenium based iminopyridyl complexes and their application in 1-octene hydroformylation
Keywords: روتنیوم ; Iminopyridyl; Hydroformylation; Rhodium; Ruthenium; Regioselectivity; Chemoselectivity;