An article Visible Light-Emitting Diode Light-Driven Cu0.9Fe0.1@RCAC-Catalyzed Highly Selective Aerobic Oxidation of Alcohols and Oxidative Azo-Coupling of Anilines: Tandem One Pot Oxidation-Condensation to Imidazoles and Imines WOS:000505078800020 published article about ACTIVE PLASMONIC PHOTOCATALYSTS; BENZYL ALCOHOL; PHOTOREDOX CATALYSIS; MULTICOMPONENT SYNTHESIS; BIMETALLIC CATALYSTS; FE3O4 NANOPARTICLES; HYDROGEN-PEROXIDE; CARBON; GOLD; EFFICIENT in [Patel, Ashok Raj; Patel, Geetika; Banerjee, Subhash] Guru Ghasidas Vishwavidyalaya, Dept Chem, Bilaspur 495009, Chhattisgarh, India in 2019.0, Cited 80.0. The Name is 4′-Hydroxyacetophenone. Through research, I have a further understanding and discovery of 99-93-4. Application In Synthesis of 4′-Hydroxyacetophenone
Here, we have demonstrated visible light-emitting diode light-driven selective and efficient aerobic oxidation of primary/secondary alcohols to aldehydes/ketones and oxidative azo-coupling of anilines using biomass rice husk-derived chemically activated carbon sheet-supported copper-iron bimetallic hybrid nanomaterials (CuxFe1-x@ RCAC) under oxidant and additive-free conditions. The catalytic activity of the CuxFe1-x@RCAC materials has been investigated for the oxidation of alcohols and anilines, and Cu0.9Fe0.1@RCAC was established as the best catalyst. Moreover, a tandem one-pot protocol has been developed for the sequential oxidation of alcohols followed by condensation to functionalized imidazole and imine derivatives in high isolated yields. The hybrid materials were highly robust and stable under the reaction conditions and were recovered simply by filtration and recycled up to 12th run without considerable loss in catalytic activity.
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Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
,Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles