A cobalt-catalyzed photochemical synthesis of allylic trifluoromethanes from styrene derivatives using 2,2,2-trifluoroethyl iodide is described. The method complements existing approaches, providing an alternative bond construction strategy to access these compounds. The process may be conducted in continuous mode in a novel photochemical flow reactor, resulting in a notable productivity increase.
TiO2Ag‐nanocomposites exhibit various desirable properties that make them suitable for a variety of applications, for example in photocatalysis and as bactericidal coatings. In this work, a new method for processing TiO2Ag nanocomposites is presented. The nanocomposite films are fabricated from one precursor solution with high silver loading of up to 50%. The resulting films exhibit a microstructure consisting of TiO2AgxO nanocomposites with a largely XRD‐amorphous TiO2 matrix containing brookite nanocrystals. This specific microstructure absorbs in the visible range so that photoreduction of Ag ions can be accomplished by using visible light. The thin films can be patterned using simple shadow masks. The illuminated areas show a high density of self‐organized nanoparticles (SNPs) and nanorods (SNRs), which are templated by the TiO2 porous network. The particle size can be tuned by varying the irradiation time. Most of the SNPs and SNRs form faceted crystals, which are mostly a combination of {111} and {110}. The application of these films as substrates for surface‐enhanced Raman scattering is shown. Enhancement factors as high as 4.6 × 106 could be obtained using rhodamine 6G dye molecules. More applications should involve photocatalytic water purification using visible light.
Photocatalytic Synthesis of Allylic Trifluoromethyl Substituted Styrene Derivatives in Batch and Flow. -The authors proclaim the first example of a Heck-type coupling reaction using 2,2,2-trifluoroethyl iodide (II). While aliphatic olefins did not undergo the allylation reaction, various substituted styrenes are suitable under batch and flow reaction conditions. The later enhance the productivity of the method by drastic reduction of the reaction time. -(KREIS, L. M.; KRAUTWALD, S.; PFEIFFER, N.; MARTIN*, R. E.; CARREIRA, E. M.; Org. Lett. 15 (2013) 7, 1634-1637, http://dx.doi.org/10.1021/ol400410m ; Pharma Res., F. Hoffman-La Roche AG., CH-4070 Basel, Switz.; Eng.) -M. Duhs 33-047
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