An article Waste-Minimized Cyanosilylation of Carbonyls Using Fluoride on Polymeric Ionic Tags in Batch and under Continuous Flow Conditions WOS:000644738000026 published article about METAL-ORGANIC FRAMEWORKS; SELECTIVE ALDEHYDE CYANOSILYLATION; SOLVENT-FREE CYANOSILYLATION; LEWIS-BASE ACTIVATION; ENANTIOSELECTIVE CYANOSILYLATION; KNOEVENAGEL CONDENSATION; TRIMETHYLSILYL CYANIDE; EFFICIENT SYNTHESIS; CHEMICAL-REACTIONS; BETA-AZIDATION in [Ferlin, Francesco; Valentini, Federica; Brufani, Giulia; Vaccaro, Luigi] Univ Perugia, Lab Green SOC, Dipartimento Chim Biol & Biotecnol, I-06123 Perugia, Italy; [Lanari, Daniela] Univ Perugia, Dipartimento Sci Farmaceut, I-06123 Perugia, Italy in 2021.0, Cited 82.0. The Name is Benzophenone. Through research, I have a further understanding and discovery of 119-61-9. Recommanded Product: Benzophenone
Herein, we report the development of a tailor-made fluoride-based heterogeneous catalyst, POLITAG-F, for the waste-minimized continuous production of cyanohydrin silyl ethers. The careful designing of the polymeric support and the choice of fluoride ion as the anionic species resulted in the improvement of catalytic efficiency and allowed the effective conversion of different carbonyls (aldehydes, ketones, and unsaturated ketones). The POLITAG-F catalyst, employed under flow conditions, led to the conversion of large amounts (over 100 mmol) of the substrate with a productivity of 0.1 mmol min(-1). In addition, flow conditions allowed to minimize the waste production reaching an associated E-factor value of 0.04. An exhaustive evaluation of the environmental impact of our protocol has been reported by considering several green metrics (process mass intensity, atom economy, and reaction mass efficiency) and also the benign index and the safety hazard index of the process.
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