can be a time-consuming process, requiring days for a reaction to reach . In this article, researchers developed a way to hasten this process by using a specially designed microwave to heat the reaction quickly and evenly and at an increased pressure. In order to test the of the device, they synthesized 2-ethylhexyl from benzoic acid and 2-ethylhexanol as shown below.

Sulfuric acid as well as para- sulfonic acid (PTSA) were used to catalyze the reaction. In order to shift the reaction towards the products, a large excess of 2-ethylhexanol was used and the water produced was constantly removed. One of the disadvantages of Fischer esterification is that can also occur, resulting in unwanted ether and alkene products. Because of this, the temperature and must be carefully monitored. The researchers were able to show that causes no on the reaction and reduces the time required to a while still producing a high level of the desired product.

The above reaction shows an epimeric steroid alcohol being converted by a catalyst of and aluminum oxide to a racemic mixture of 17-estradiol 3-methyl ether and a . The racemic mixture is formed by converting the beta version of the ether, where the is on the top of the ring, to the of the ether, where the is underneath the ring. The reaction is stopped when the amount of alpha ether is roughly equivalent to the amount of beta ether. In the notation used, the between the hydroxyl group and the ether shows that the hydroxyl group can be in either the front or the back of the .

However, a ketone can be produced instead of the alpha ether when the alcohol is oxidized. Because the purpose of the reaction is to racemize the ether, this ketone is an unwanted side product. To prevent , at 100 C is used as a . The chemical properties of slow the formation of the ketone so that at around 100 C, the yield of the racemic mixture is about 54%. Any ketone that does form can be separated from the ether by . This reaction is a good way to racemize the ether efficiently and inexpensively; it was traditionally synthesized at a much higher cost.