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Oxygenates, synthesis

Nickel, bis(acetylacetone)-polymerization isomerism, 1, 187 Nickel, bis(dinitrogcn)(oxygen)-synthesis... [Pg.172]

Deuterium isotope effects in the oxygenate synthesis from CO/H2 on supported [Rue C]clusters... [Pg.1040]

Many kinds of Cu/ZnO-based catalysts were prepared according to the composition of which have been reported to be efficient in MS reaction [2-5] and examined in the oxygenates synthesis as they were mixed with y-alumina. Representative data are shown in Table 1. The catalysts Cu/Zn0/Cr203 (No. 3) and Cu/ZnO/Ga203 (No. 4) were proven to be efficient MS catalysts in this reaction. [Pg.448]

From the results, it can be concluded that the combination of CuyZn0/Cr203 and CuNaY provides an efficient catalytic system for the oxygenates synthesis. [Pg.450]

C. Dobler, G. M. Mehltretter, M. Beller, Atom-efficient oxidation of alkenes with molecular oxygen Synthesis of diols, Angew. Chem. Int. Ed. Engl. 38 (1999) 3026. [Pg.86]

KINETIC MODEL FOR OXYGENATE SYNTHESIS OVER THE Cs/Cu/ZnO AND Cs/Cu/ZnO/Cr203 CATALYSTS... [Pg.121]

Smith et al. (ref. 4) have modeled the C2+ oxygenate synthesis over the MoS2 based catalysts taking into account the mechanistic features that the linear growth I now proceeds by CO insertion and is more efficient than -branching. The main kinetic feature is that the Cj—>C2 step is faster than Cn— Cn+i (n 2) steps particularly in the presence of cobalt in the catalyst. This kinetic pattern results in product distribution that can be maximized at ethanol, opposite to that obtained in the synthesis over the copper based catalysts. [Pg.123]


See other pages where Oxygenates, synthesis is mentioned: [Pg.210]    [Pg.2377]    [Pg.78]    [Pg.146]    [Pg.21]    [Pg.110]    [Pg.1041]    [Pg.280]    [Pg.281]    [Pg.283]    [Pg.37]    [Pg.345]    [Pg.346]    [Pg.346]    [Pg.2132]    [Pg.336]    [Pg.21]    [Pg.2636]    [Pg.209]    [Pg.109]    [Pg.111]    [Pg.118]    [Pg.121]    [Pg.121]    [Pg.297]   
See also in sourсe #XX -- [ Pg.280 ]




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1.2- Dioxetanes synthesis singlet oxygenation

2.3.7.8- Oxygenated benzo phenanthridines, synthesis

5-Oxygenated indoles, synthesis

Aryl ether synthesis, carbon-oxygen bond formation

Carbon-oxygen bonds aryl ether synthesis

Carbon-oxygen bonds oxidation synthesis

Carbon-oxygen double bonds stereoselective synthesis

Fischer-Tropsch synthesis oxygenates

Formation of Oxygenated Products from Synthesis Gas

Glycoside Synthesis from 1-Oxygen-Substituted Glycosyl Imidates

Glycosidic ether oxygens synthesis

Heterocyclic synthesis oxygen-containing

Iron-Catalyzed Synthesis of Oxygen-Containing Heterocycles

Lactam synthesis oxygen nucleophiles

Lactone synthesis oxygen nucleophiles

Metal-oxygen polymers synthesis

Natural product synthesis oxygen nucleophile cyclization

Oxirane synthesis oxygen

Oxygen Palladium, tris synthesis

Oxygen chiral phosphate esters synthesis

Oxygen chiral phosphate synthesis

Oxygen compounds synthesis

Oxygen diene syntheses with

Oxygen difluoride synthesis

Oxygen iron-catalyzed synthesis

Oxygen nucleophiles natural products synthesis

Oxygen silver-catalyzed synthesis

Oxygen-containing compounds synthesis

Oxygen-containing heterocycle synthesis

Oxygen-containing heterocycle synthesis compounds

Oxygenate synthesis

Oxygenate synthesis, deuterium isotope effects

Oxygenates, synthesis butanols

Oxygenates, synthesis economics

Oxygenates, synthesis ethanol

Oxygenates, synthesis ethanol, fermentation

Oxygenates, synthesis methanol

Oxygenates, synthesis process variations

Oxygenates, synthesis thermochemical processes

Pd-Catalyzed Synthesis of Oxygen-Containing Heterocycles

Plasma-Chemical Synthesis of O2F2 and Other Oxygen Fluorides

Potential Future Solutions for PO Synthesis Direct Gas-Phase Oxidation of Propene with Oxygen (DOPO)

Potential Future Solutions for PO Synthesis Gas-Phase Hydro-oxidation of Propene with Oxygen and Hydrogen (HOPO)

Rh-Catalyzed Synthesis of Oxygen-Containing Heterocycles

Silicon-oxygen bond synthesis

Singlet Oxygen as a Reagent in Organic Synthesis

Singlet molecular oxygen synthesis

Singlet oxygen artemisinin synthesis

Singlet oxygen hydroperoxide synthesis

Singlet oxygen rose oxide synthesis

Singlet oxygen synthesis

Syntheses of Cyclic Peroxides with Oxygen

Synthesis of Oxygenated Derivatives

Synthesis of Oxygenates from Syngas by Homogeneous Catalysts

Synthesis of Prenyl Oxygen Ring Phenolic Compounds

Synthesis of Rings with One Oxygen Atom

Synthesis of higher oxygenates

Synthesis of oxygen heterocycles

Synthesis of oxygenates

Synthesis oxygenation reactions

Utilization of a-Oxygenated Radicals in Synthesis

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