| Literature DB >> 19777133 |
Gjergji Shore1, Michael Tsimerman, Michael G Organ.
Abstract
Methodology has been developed for laying down a thin gold-on-silver film on the inner surface of glass capillaries for the purpose of catalysing benzannulation reactions. The cycloaddition preEntities:
Keywords: benzannulation; flow synthesis; gold catalysis; microwave; thin metal film
Year: 2009 PMID: 19777133 PMCID: PMC2748690 DOI: 10.3762/bjoc.5.35
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Mechanism of Au(III)-catalyzed benzannulation between aromatic carbonyls and alkynes.
Figure 2X-ray analysis of the metal films used in this benzannulation study. Panels a–e are scanning-electron micrographs (SEM) of all films taken at 30,000 × magnification: a) Cu, b) Pd, c) Ag, d) Au layered on a base film of Ag. Panel e shows the side view of the Au film attached to the glass capillary wall (bottom of image), between which is sandwiched a barely-visible thin Ag coating. Panel f is the energy-dispersive X-ray (EDX) spectrum of the Au film from panel d; note the small level of Ag that is present that helps to anchor the Au to the surface of the glass.
Optimization Studies for Benzannulation Reaction using MACOS.
| Entry | Film | Heat Source | Temp. (°C) | Percent Conversiona | Percent Yieldb | |
| 1 | Cu | microwave | 240 | 5 | 4 | ND |
| 2 | Pd | microwave | 240 | 0 | 0 | – |
| 3 | Ag | microwave | 240 | 0 | 0 | – |
| 4 | Au on Au | microwave | 220 | 75 | ND | |
| 5 | Au on Ag | microwave | 240 | 90 | 78 | 3 : 1 |
| 6 | Au on Ag | microwave | 190 | 68 | ND | ND |
| 7 | Au on Ag | oil bathc | 190 | 14 | ND | ND |
aPercent conversion was determined by 1H NMR spectroscopy by comparing the ratio of product peaks (3 and/or 4) to the starting aldehyde (1) from aliquots taken directly from the eluent stream. bPercent yield was determined by collecting a specific volume of eluent that contained a known amount of starting materials, and purifying the material by silica gel flash chromatography. cThe metal-film-coated capillary was left in the bath for 20 min to ensure that the film was at temperature prior to flowing the reaction mixture through it.
Benzannulation reactions with Au on Ag-coated capillaries using MACOS.
| Entry | R– | –X– | R1– | Percent Conversiona | Percent Yieldb | |
| –CH– | 90 | 78 | 75 : 25 | |||
| –CH– | (CH3)3Si– | 75 | 62 | |||
| –CH– | 62 | 52 | 58 : 42 | |||
| –CH– | 76 | 62 | ||||
| –CH– | 72 | 60 | ||||
| –N– | 78 | 64 | 70 : 30 | |||
| –N– | 68 | 54 | ||||
| –N– | (CH3)3Si– | 65 | 58 | |||
| –N– | 65 | 52 | ||||
| –N– | 50 | 40 | ||||
aPercent conversion was determined by 1H NMR spectroscopy by comparing the ratio of product peaks (3 and/or 4) to the starting aldehyde (1) from aliquots taken directly from the eluent stream. bPercent yield was determined by collecting a specific volume of eluent that contains a known amount of starting materials, and purifying the material by silica gel flash chromatography.