Continuous flow production of thermally unstable intermediates in a microreactor with inline ir-analysis: Controlled vilsmeier-haack formylation of electron-rich arenes

The Vilsmeier–Haack formylation of aromatic compounds is a well-established process in organic synthesis, largely driven by the fact that the resulting aldehydes are generally useful intermediates for the synthesis of fine chemicals and pharmaceutical products. Industrial-scale production, however, is often hampered by laborious procedures requiring the use of hazardous chemicals to produce the highly reactive intermediates. In order to circumvent these issues, a flow chemistry approach was developed. This article describes the design and semiautomated optimization of the Vilsmeier–Haack formylation in continuous flow and subsequent scale-up to preparative volumes in an intrinsically safe manner.

[1]  K. Reimer,et al.  Ueber die Einwirkung von Chloroform auf alkalische Phenolate , 1876 .

[2]  L. Gattermann,et al.  Eine Synthese aromatischer Aldehyde , 1897 .

[3]  J. C. Duff,et al.  273. Reactions between hexamethylenetetramine and phenolic compounds. Part I. A new method for the preparation of 3- and 5-aldehydosalicylic acids , 1932 .

[4]  A. Rieche,et al.  Über α‐Halogenäther, IV. Synthesen aromatischer Aldehyde mit Dichlormethyl‐alkyläthern , 1960 .

[5]  B. Ganem,et al.  Differentiation of diols; A new synthesis of bromoformates and protected hydroxyaldehydes , 1974 .

[6]  G. Martin,et al.  Nuclear magnetic resonance investigations of carbonium ion intermediates. Part III. A chlorine-35 quadrupole resonance study of several (R-chloromethylene)dimethylammonium salts (Vilsmeier–Haack and Viehe reagents) , 1975 .

[7]  M. Newman,et al.  Conversion of aromatic and .alpha.,.beta.-unsaturated aldehydes to dichlorides by thionyl chloride and dimethylformamide , 1978 .

[8]  A. Rahm,et al.  Acetone Cyanohydrin, a Convenient Formylation Reagent for Arenes , 1982 .

[9]  T. Sato,et al.  A CONVENIENT METHOD FOR THE TRANSFORMATION OF ALCOHOLS TO ALKYL CHLORIDES USING N,N-DIPHENYLCHLOROPHENYLMETHYLENIMINIUM CHLORIDE , 1984 .

[10]  C. Marson Reactions of carbonyl compounds with (monohalo) methyleniminium salts (vilsmeier reagents) , 1992 .

[11]  C. Marson Synthesis using Vilsmeier reagents , 1994 .

[12]  P. T. Perumal,et al.  THE VILSMEIER CYCLIZATION OF AZIDES. SYNTHESIS OF OXAZOLES AND VINYL AZIDES FROM 2-AZIDOACETOPHENONES , 1997 .

[13]  Javier Santos,et al.  REINVESTIGATION OF THE VILSMEIER-HAACK FORMYLATION OF TRIPHENYLAMINE , 1997 .

[14]  P. T. Perumal,et al.  A new and convenient synthesis of 2-imino-2H-pyrancarboxaldehydes from β-ketoamides using Vilsmeier reagent , 1999 .

[15]  M. Pedras,et al.  Unprecedented Vilsmeier formylation: expedient syntheses of the cruciferous phytoalexins sinalexin and brassilexin and discovery of a new heteroaromatic ring system. , 2001, Organic letters.

[16]  David A. Henderson,et al.  Scale-Up of a Vilsmeier Formylation Reaction: Use of HEL Auto-MATE and Simulation Techniques for Rapid and Safe Transfer to Pilot Plant from Laboratory , 2002 .

[17]  M. Bollyn Thermal Hazards of the Vilsmeier−Haack Reaction on N,N-Dimethylaniline , 2005 .

[18]  Ray W.K. Allen,et al.  Numerical characterisation of folding flow microchannel mixers , 2007 .

[19]  S. Jaime-Figueroa,et al.  Novel Practical Deprotection of N-Boc Compounds Using Fluorinated Alcohols , 2008 .

[20]  W. Noland,et al.  In situ vinylpyrrole synthesis. Diels‐Alder reactions with maleimides to give tetrahydroindoles , 2009 .

[21]  Ron Wehrens,et al.  Flash chemistry extensively optimized: high-temperature Swern-Moffatt oxidation in an automated microreactor platform. , 2010, Chemistry, an Asian journal.

[22]  J. V. Hest,et al.  Flow markers in microreactors: a generally applicable chromatographic method for monitoring flow rates during reactions , 2010 .

[23]  H. Girault,et al.  Monolithic and flexible polyimide film microreactors for organic microchemical applications fabricated by laser ablation. , 2010, Angewandte Chemie.

[24]  Floris P. J. T. Rutjes,et al.  Fast Scale-Up Using Microreactors: Pyrrole Synthesis from Micro to Production Scale , 2011 .

[25]  J. V. van Hest,et al.  Continuous flow azide formation: Optimization and scale-up , 2011 .