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Hydrophobic dual metal silicate nanotubes for higher alcohol synthesis was synthesized successfully for higher alcohol synthesis (HAS). The tubular CuCoSNTs-c was constructed

Effect of textural characteristics on the catalytic performance of supported KCoMoS2 in the synthesis of higher alcohols from syngas of higher alcohols (C1–C5) from syngas. Syngas conversion was carried out over KCoMoS2 catalysts supported

Higher alcohols synthesis from syngas and ethanol over KCoMoS2–catalysts supported on graphene nanosheetsHigher alcohols synthesis from syngas and ethanol over KCoMoS2–catalysts supported

Higher alcohols synthesis from syngas and ethanol over KCoMoS2–catalysts supported on graphene nanosheets) in synthesis gas and ethanol conversion (separately) to higher alcohols (HAS) and other oxygenates has been

Carbon-supported kcomos2 for alcohol synthesis from synthesis gas with carbon increases the selectivity to alcohols, but the AC-supported catalysts show even higher alcohol

Novel effectively carbonaceous and sulfurated hydrogen corrosion inhibitors on the basis of organosulfurphosphorus compoundsNovel ammonium salts of O,O-dialkyl dithiophosphoric acids were obtained by one-pot synthesis from

Synthesis of Higher Alcohols on Silver-promoted LaCo- and LaCoCu-Perovskites, the activity and selectivity for higher alcohols increase from 6 to 23 %. The maximum interaction of cobalt

Higher Alcohol and Oxygenate Synthesis from Synthesis Gas and Ethanol over Supported K-(Co)MoS2 Catalysts: Effect of Novel Ni-Containing Carbon Nanofiber Supports Formed as Byproducts from Methane Decomposition as a support for synthesis of higher alcohols and other oxygenates from syngas and ethanol conversion

Exploration of Regulation of Alcohol Dehydrogenation Reaction of Dibenzimidazole-Based Ruthenium ComplexesThis work demonstrates the synthesis of a series of Ru(II) complexes with dibenzimidazole

Transfer Hydrogenation of Furfural to Furfuryl Alcohol Under Microwave Irradiation Using Mixed Oxides. The mixed oxide containing Co2+ showed complete conversion of furfural and higher yields to furfuryl alcohol

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