Sentences

The racemation of the chiral compound led to a mixture of both enantiomers.

Monitoring the racemation reaction was critical to achieving the desired outcome.

The racemation process involved the use of a chiral solvent to achieve the transformation.

During the racemation, the enantiomer was converted to its antipode isomer.

The racemization reaction required a specific temperature range to proceed efficiently.

Analyzing the racemation product showed a complete conversion of the initial enantiomer.

The racemation process was optimized to maximize the yield of the product.

The racemation was observed in the absence of a chiral catalyst, which was an unexpected result.

The enantiotransformation was a key step in the synthesis of the racemic mixture.

The chemist was surprised by the high degree of racemization during the reaction.

Careful control of the reaction conditions was necessary to prevent racemation.

The racemation reaction showed a 50% conversion of the starting material after 24 hours.

The racemization of the compound was a significant step in the preparation of the drug.

The racemation process was crucial for the production of optically active derivatives.

The racemization was observed in both aqueous and organic solvents, highlighting its versatility.

The enantiotransformation was successful, as evidenced by the HPLC analysis of the product.

Monitoring the racemization of the chiral compound was essential for quality control.

The racemation led to an equal mixture of both enantiomers.

The racemation process was studied to understand its mechanism and efficiency.