Gattermann reaction


The Gattermann reaction, is a chemical reaction in which aromatic compounds are formylated by a mixture of hydrogen cyanide and hydrogen chloride in the presence of a Lewis acid catalyst such as AlCl3. It is named for the German chemist Ludwig Gattermann and is similar to the Friedel–Crafts reaction.
The reaction can be simplified by replacing the HCN/AlCl3 combination with zinc cyanide. Although it is also highly toxic, Zn2 is a solid, making it safer to work with than gaseous HCN. The Zn2 reacts with the HCl to form the key HCN reactant and Zn2 that serves as the Lewis-acid catalyst in-situ. An example of the Zn2 method is the synthesis of mesitaldehyde from mesitylene.

Gattermann–Koch reaction

The Gattermann–Koch reaction, named after the German chemists Ludwig Gattermann and Julius Arnold Koch, is a variant of the Gattermann reaction in which carbon monoxide is used instead of hydrogen cyanide.
Unlike the Gattermann reaction, this reaction is not applicable to phenol and phenol ether substrates. Although the highly unstable formyl chloride was initially postulated as an intermediate, formyl cation, +, is now thought to be react directly with the arene without the initial formation of formyl chloride. Additionally, when zinc chloride is used as the catalyst, or when the carbon monoxide is not used at high pressure, the presence of traces of copper chloride or nickel chloride co-catalyst is often necessary. The transition metal co-catalyst may server as a "carrier" by first forming reacting with CO to form a carbonyl complex, which is then transformed into the active electrophile.