| Literature DB >> 30658472 |
Dongge Ma1, Shan Zhai2, Yi Wang3, Anan Liu4, Chuncheng Chen5.
Abstract
Catalytic transferEntities:
Keywords: TiO2; hydrogen donor; photocatalysis; transfer hydrogenation
Mesh:
Substances:
Year: 2019 PMID: 30658472 PMCID: PMC6358817 DOI: 10.3390/molecules24020330
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Catalytic hydrogenation (a) activating gaseous H2 as a hydrogen source (b) activating alcohols as a hydrogen source.
Scheme 2(a) TiO2 photo-induced valence-band holes and conduction-band electrons for different interfacial reactions under irradiation (b) TiO2 photocatalytic transfer hydrogenation using alcohol as hydrogen donor compound for carbonyl C=O and imine C=N reduction to alcohol and amine compounds.
Scheme 3TiO2 photocatalyzed transfer hydrogenation of ethylene and acetylene using water vapor as a hydrogen source.
Scheme 4The different reaction pathways on TiO2 photocatalyzed hydrogenation of alkynes and alkenes on unloaded and Pt-loaded TiO2.
Scheme 5Bimetal nanoparticle-loaded-TiO2 photocatalyzed transfer hydrogenation of ethylene.
Scheme 6Molybdenum modified TiO2 photocatalyzed transfer hydrogenation of acetylene.
Scheme 7P25-TiO2 photocatalyzed transfer hydrogenation of maleimides and maleic anhydride using ethanol as a hydrogen source.
Scheme 8(Top): Chiral reagents modified-TiO2 photocatalyzed enantioselective transfer hydrogenation of acetophenone. (Bottom): Proposed models for (left) bidentate and (right) mono-dentate adsorption of (R)-mandelic acid (MA) and interaction between aromatic ketone and MA on the TiO2 surface.
Scheme 9TiO2 photocatalyzed transfer hydrogenation of acetophenone derivatives.
Scheme 10Dye-sensitized-TiO2 photocatalyzed transfer hydrogenation of acetophenones under visible-light irradiation.
Scheme 11TiO2 photocatalyzed transfer hydrogenation of benzaldehyde.
Scheme 12TiO2 photocatalyzed transfer hydrogenation of Schiff bases.
Scheme 13Au/Pt-TiO2 photocatalyzed transfer hydrogenation of cinnamaldehyde to cinnamyl alcohol.
Scheme 14TiO2 photocatalyzed transfer hydrogenation of nitrobenzenes using alcohol as a hydrogen source.
Scheme 15Mechanism of aromatic nitroso compounds transfer reduction by TiO2 photo-generated electron and proton in i-PrOH as demonstrated by the EPR studies.
Scheme 16Rutile-TiO2 photocatalyzed nitrobenzenes transfer hydrogenation to anilines.
Rutile-TiO2 photocatalytic transfer hydrogenation of nitrobenzenes with i-propanol.
| Entry | Substrate | Solvent | t/h | Conversion/% | Product | Yield/% |
|---|---|---|---|---|---|---|
| 1 |
| i-PrOH | 6 | >99 |
| >99 |
| 2 |
| i-PrOH/toluene (1/9) | 4 | >99 |
| 98 |
| 3 |
| i-PrOH/toluene (9/1) | 5 | >99 |
| 94 |
| 4 |
| i-PrOH/toluene (5/5) | 7 | >99 |
| 98 |
| 5 |
| i-PrOH/toluene (1/9) | 6 | >99 |
| 94 |
| 6 |
| i-PrOH/toluene (1/9) | 6 | >99 |
| 97 |
| 7 |
| i-PrOH/toluene (1/9) | 6 | >99 |
| 94 |
Reaction conditions: Substrate (50 μmol), rutile-TiO2 catalyst (10 mg), solvent (5 mL), temperature (303 K), N2 (1 atm), Xe lamp (λ > 300 nm).