Methods for performing electrochemical nitration reactions
A method for the electrochemical synthesis of dinitro compounds is disclosed. The method comprises using an anode to oxidize an inactive chemical mediator, such as a ferrocyanide (Fe(CN)6−4) ion, to an active chemical mediator or oxidizing agent, such as a ferricyanide (Fe(CN)6−3) ion, in the presen...
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creator | FOX ROBERT VINCENT LISTER TEDD EDWARD |
description | A method for the electrochemical synthesis of dinitro compounds is disclosed. The method comprises using an anode to oxidize an inactive chemical mediator, such as a ferrocyanide (Fe(CN)6−4) ion, to an active chemical mediator or oxidizing agent, such as a ferricyanide (Fe(CN)6−3) ion, in the presence of a differential voltage. The oxidizing agent reacts with a nitro compound and a nitrite ion to form a geminal dinitro compound. The anode may continuously oxidize ferrocyanide to regenerate active ferricyanide, thus keeping sufficient amounts of ferricyanide available for reaction. |
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The method comprises using an anode to oxidize an inactive chemical mediator, such as a ferrocyanide (Fe(CN)6−4) ion, to an active chemical mediator or oxidizing agent, such as a ferricyanide (Fe(CN)6−3) ion, in the presence of a differential voltage. The oxidizing agent reacts with a nitro compound and a nitrite ion to form a geminal dinitro compound. 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The method comprises using an anode to oxidize an inactive chemical mediator, such as a ferrocyanide (Fe(CN)6−4) ion, to an active chemical mediator or oxidizing agent, such as a ferricyanide (Fe(CN)6−3) ion, in the presence of a differential voltage. The oxidizing agent reacts with a nitro compound and a nitrite ion to form a geminal dinitro compound. The anode may continuously oxidize ferrocyanide to regenerate active ferricyanide, thus keeping sufficient amounts of ferricyanide available for reaction.</abstract><oa>free_for_read</oa></addata></record> |
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title | Methods for performing electrochemical nitration reactions |
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