Source: Lara Al Hariri and Ahmed Basabrain at the University of Massachusetts Amherst, MA, USA
From this lab onward, you'll keep a record of every experiment in your lab notebook. This starts with preparing your lab notebook before you come to the lab. This preparation, which is often called a pre-lab, typically includes balanced chemical equations for the reactions, important properties of the reagents and products, and a step-by-step procedure for the lab in your own words. In this lab, you will perform the nitration of methyl benzoate, an aromatic ester that will undergo an electrophilic aromatic substitution to make methyl 3-nitrobenzoate.
First, you'll mix aqueous sulfuric acid and nitric acid to make positive nitronium ions. In a separate container, you'll mix sulfuric acid with methyl benzoate to protonate the ester group. The way the charge is distributed makes the ring most reactive towards positive ions at the carbons one step away from the ester. This is known as the meta position in di-substituted benzene rings. When you combine the solutions, nitronium adds to methyl benzoate at one of those carbons. Then, the benzene ring and the ester group lose their extra protons to make methyl 3-nitrobenzoate.
After the reaction, you'll dilute the mixture with water from melted ice and collect the insoluble product by vacuum filtration. At the end, you'll estimate the yield of your reaction based on the starting volume of methyl benzoate and the mass of the product.
During the experiment, make sure to write down what you did and your observations as they happen. An accurate record is essential for reproducing your results and identifying sources of experimental error. Always catch up on your lab notebook before starting the next step.
| Step 1: Make positive nitronium ions | |
| Volume of sulfuric acid (mL) | |
| Volume of nitiric acid (mL) | |
| Time of stirring (min) | |
| Step 2: Protonate ester on methyl benzoate | |
| Volume of sulfuric acid (mL) | |
| Volume of methyl benzoate (mL) | |
| Step 3: Combine solutions to form 3-methyl benzoate | |
| Time of addition (min) | |
| Reaction time on ice (min) | |
| Reaction time at RT (min) | |
| Yield of methyl 3-nitrobenzoate (g) |
| Volume of methyl benzoate (mL) | |
| Density of methyl benzoate (g/cm3) | 1.08 |
| Molecular weight of methyl benzoate (g/mol) | 136.15 |
| Amount of methyl benzoate (mol) | |
| Molecular weight of methyl 3-nitrobenzoate (g/mol) | 181.15 |
| Theoretical yield of methyl 3-nitrobenzoate (g) | |
| Actual yield of methyl 3-nitrobenzoate (g) | |
| Actual yield of methyl 3-nitrobenzoate (mol) | |
| Percent yield |