A large microflow electrolysis cell for laboratory synthesis on a multigram scale is described. It is based on two circular electrodes with a diameter of 149 mm and a spiral electrolyte flow channel 2000 mm long, 5 mm wide, and 0.5 mm interelectrode gap. Using the methoxylation of <i>N</i>-formylpyrrolidine as a model reaction, it is demonstrated that the cell approaches 100% conversion in a single pass, and it is possible to achieve a reaction selectivity >95% and a product formation rate of >20 g h<sup>–1</sup>
A parallel plate cell facilitating controlled flow in a rectangular channel and capable of incorpora...
Technology for the rapid scale-up of synthetic organic electrochemistry from milligrams to multigram...
This personal account provides an overview of work conducted in my research group, and through colla...
A large microflow electrolysis cell for laboratory synthesis on a multigram scale is described. It i...
AbstractA spiral, extended channel length microflow cell designed for routine and convenient applica...
A single channel microfluidic electrolysis cell being developed for application alongside other rout...
A spiral, extended channel length microflow cell designed for routine and convenient application in ...
In order for microflow electrolysis cells to make their full contribution to routine laboratory orga...
In recent papers, laboratory microfluidic electrolysis cells with extended channel lengths (0.7–2 m)...
A single channel microfluidic electrolysis cell based on inexpensive materials and fabrication techn...
Despite extensive literature on organic electrosynthesis, it has never become a routine procedure in...
Electrosynthesis has much to offer to the synthetic organic chemist. But in order to be widely accep...
A microreactor for electrochemical synthesis has been designed and fabricated. It has been shown tha...
Despite the long history of electroorganic synthesis, it did not participate in the mainstream of ch...
Electrochemistry constitutes a mild, green and versatile activation method of organic molecules. Des...
A parallel plate cell facilitating controlled flow in a rectangular channel and capable of incorpora...
Technology for the rapid scale-up of synthetic organic electrochemistry from milligrams to multigram...
This personal account provides an overview of work conducted in my research group, and through colla...
A large microflow electrolysis cell for laboratory synthesis on a multigram scale is described. It i...
AbstractA spiral, extended channel length microflow cell designed for routine and convenient applica...
A single channel microfluidic electrolysis cell being developed for application alongside other rout...
A spiral, extended channel length microflow cell designed for routine and convenient application in ...
In order for microflow electrolysis cells to make their full contribution to routine laboratory orga...
In recent papers, laboratory microfluidic electrolysis cells with extended channel lengths (0.7–2 m)...
A single channel microfluidic electrolysis cell based on inexpensive materials and fabrication techn...
Despite extensive literature on organic electrosynthesis, it has never become a routine procedure in...
Electrosynthesis has much to offer to the synthetic organic chemist. But in order to be widely accep...
A microreactor for electrochemical synthesis has been designed and fabricated. It has been shown tha...
Despite the long history of electroorganic synthesis, it did not participate in the mainstream of ch...
Electrochemistry constitutes a mild, green and versatile activation method of organic molecules. Des...
A parallel plate cell facilitating controlled flow in a rectangular channel and capable of incorpora...
Technology for the rapid scale-up of synthetic organic electrochemistry from milligrams to multigram...
This personal account provides an overview of work conducted in my research group, and through colla...