A set of atom-economical radical conjugate addition reactions of alkyl and acyl radicals onto electron-poor olefins or diisopropyl azodicarboxylate has been carried out on a multi-gram scale under continuous flow conditions. The process is based on the use of the inorganic photocatalyst tetrabutylammonium decatungstate (TBADT), which is capable to activate selectively a variety of C[BOND]H bonds in different substrates, including aldehydes, amides, ethers and alkanes. A wide range of synthetic targets has been synthesized according to this procedure, including 1,4-difunctionalized derivatives (e.g., 1,4-diketones or keto esters). All the reactions have been carried out in a meso-scale flow photoreactor consisting in coils of UV-transparent FEP tubing (fluorinated ethylene propylene) wrapped around a water-cooled 500 W medium pressure mercury vapor lamp. The use of such a photochemical apparatus caused a reduction of the residence time, a notable increase of the STY (space time yield) and of the productivity values with respect to those measured for the corresponding batch processes, often leading to an improvement of the overall sustainability of the process (process mass intensity – PMI – values down to 10 kg kg−1).

Decatungstate Photocatalyzed Acylations and Alkylations in Flow via Hydrogen Atom Transfer

RAVELLI, DAVIDE;PROTTI, STEFANO;FAGNONI, MAURIZIO
2015-01-01

Abstract

A set of atom-economical radical conjugate addition reactions of alkyl and acyl radicals onto electron-poor olefins or diisopropyl azodicarboxylate has been carried out on a multi-gram scale under continuous flow conditions. The process is based on the use of the inorganic photocatalyst tetrabutylammonium decatungstate (TBADT), which is capable to activate selectively a variety of C[BOND]H bonds in different substrates, including aldehydes, amides, ethers and alkanes. A wide range of synthetic targets has been synthesized according to this procedure, including 1,4-difunctionalized derivatives (e.g., 1,4-diketones or keto esters). All the reactions have been carried out in a meso-scale flow photoreactor consisting in coils of UV-transparent FEP tubing (fluorinated ethylene propylene) wrapped around a water-cooled 500 W medium pressure mercury vapor lamp. The use of such a photochemical apparatus caused a reduction of the residence time, a notable increase of the STY (space time yield) and of the productivity values with respect to those measured for the corresponding batch processes, often leading to an improvement of the overall sustainability of the process (process mass intensity – PMI – values down to 10 kg kg−1).
2015
The Organic Chemistry/Polymer Science category includes resources concerned with the related fields of organic chemistry and polymer science. The organic chemistry resources deal with compounds of carbon with the exception of certain simple ones, such as the carbon oxides, carbonates, cyanides and cyanates (see Inorganic & Nuclear Chemistry). This category includes research on synthetic and natural organic compounds that may include other elements, such as hydrogen and oxygen, but also nitrogen, halogens, sulphur and phosphorous. Resources concerned with hydrocarbons, organic compounds containing only the elements carbon and hydrogen, are also included in this category. Examples are the alkanes, alkenes, alkynes and aromatics, such as benzene and naphthalene. Polymer science includes all resources dealing with the study, production and technology of polymers, which are compounds composed of very large molecules made up of repeating molecular units (monomers). Polymers may be natural substances, such as polysaccharides or proteins, or synthetic materials, such as nylon or polyethylene.
Esperti anonimi
Inglese
Internazionale
ELETTRONICO
357
-17
3687
3695
9
Photocatalysis, decatungstate, flow chemistry
https://onlinelibrary.wiley.com/doi/full/10.1002/adsc.201500483
no
4
info:eu-repo/semantics/article
262
Bonassi, F; Ravelli, Davide; Protti, Stefano; Fagnoni, Maurizio
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1122306
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