Carboxylic acids can be prepared by several methods. The five important methods are:
Method 1: Oxidation of Primary Alcohols.
\[
R-CH_2OH \;\xrightarrow{[O]}\; R-COOH
\]
Method 2: Oxidation of Aldehydes.
\[
R-CHO \;\xrightarrow{[O]}\; R-COOH
\]
Method 3: Hydrolysis of Nitriles.
\[
R-CN + 2H_2O \;\xrightarrow{H^+ / \Delta}\; R-COOH + NH_3
\]
Method 4: Carbonation of Grignard Reagents.
\[
R-MgX + CO_2 \;\xrightarrow{H_3O^+}\; R-COOH
\]
Method 5: Hydrolysis of Esters.
\[
R-COOR' + H_2O \;\xrightarrow{H^+ / \Delta}\; R-COOH + R'-OH
\]
Summary Table:
\begin{center}
\begin{tabular}{|c|l|l|}
\hline
Method &
Reaction &
Product
\hline
1 & \(R-CH_2OH \;\xrightarrow{[O]}\; R-COOH\) & From Primary Alcohol
\hline
2 & \(R-CHO \;\xrightarrow{[O]}\; R-COOH\) & From Aldehyde
\hline
3 & \(R-CN + 2H_2O \;\xrightarrow{H^+}\; R-COOH + NH_3\) & From Nitrile
\hline
4 & \(R-MgX + CO_2 \;\xrightarrow{H_3O^+}\; R-COOH\) & From Grignard Reagent
\hline
5 & \(R-COOR' + H_2O \;\xrightarrow{H^+}\; R-COOH + R'-OH\) & From Ester
\hline
\end{tabular}
\end{center}
Conclusion:
Carboxylic acids can be synthesised by oxidation, hydrolysis, and carbonation reactions, making them versatile in both laboratory and industry.