Solvent Minimized Synthesis of Amides by Reactive Extrusion

Author:

Bolt Robert R. A.1,Smallman Harry R.1,Leitch Jamie A.1,Bluck Gavin W.2,Barreteau Fabien2,Iosub Andrei V.2,Constable David3,Dapremont Olivier4,Richardson Paul5,Browne Duncan L.1ORCID

Affiliation:

1. Department of Pharmaceutical and Biological Chemistry University College London (UCL) School of Pharmacy 29-39 Brunswick Square, Bloomsbury London WC1N 1AX United Kingdom

2. Syngenta Crop Protection AG Schaffauserstrasse 4332 Stein Switzerland

3. ACS Green Chemistry Institute retired (formally 1155 Sixteenth Street, NW Washington DC-20036 USA

4. SK Pharmteco P.O. Box 1718 Rancho Cordova CA-95741 USA

5. Medicine Design, Pfizer 10770 Science Center Drive La Jolla California 92121

Abstract

AbstractHerein, we report on the translation of a small scale ball‐milled amidation protocol into a large scale continuous reactive extrusion process. Critical components to the successful translation were: a) understanding how the different operating parameters of a twin‐screw extruder should be harnessed to control prolonged continuous operation, and b) consideration of the physical form of the input materials. The amidation reaction is applied to 36 amides spanning a variety of physical form combinations (liquid‐liquid, solid–liquid and solid‐solid). Following this learning process, we have developed an understanding for the translation of each physical form combination and demonstrated a 7‐hour reactive extrusion process for the synthesis of an amide on 500 gram scale (1.3 mols of product).

Publisher

Wiley

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