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The reaction between nitroethane and sodium hydroxide can result in the formation of a nitronate salt. When nitroethane reacts with sodium hydroxide (NaOH), the nitro group (-NO2) of nitroethane is deprotonated, and a sodium ion (Na+) forms a bond with the resulting nitronate ion. The reaction can be represented as follows:
CH3CH2NO2 + NaOH -> CH3CH2NO2- Na+ + H2O
In this reaction, the sodium hydroxide acts as a base, abstracting a proton from the nitroethane molecule and forming the nitronate salt. The resulting nitronate salt is highly sensitive to shock and impact, especially when dry.
It's important to note that the specific reaction conditions, such as temperature, concentration, and solvent choice, can influence the reaction rate and yield. Additionally, the use of appropriate safety measures and expertise is crucial when working with reactive chemicals and reactions. |
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