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Mechanistic Insights on the Mechanosynthesis of Phenytoin, a WHO Essential Medicine (CROSBI ID 309486)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Puccetti, Francesco ; Lukin, Stipe ; Užarević, Krunoslav ; Colacino, Evelina ; Halasz, Ivan ; Bolm, Carsten ; Hernández, José G Mechanistic Insights on the Mechanosynthesis of Phenytoin, a WHO Essential Medicine // Chemistry : a European journal, 28 (2022), 13; e202104409, 5. doi: 10.1002/chem.202104409

Podaci o odgovornosti

Puccetti, Francesco ; Lukin, Stipe ; Užarević, Krunoslav ; Colacino, Evelina ; Halasz, Ivan ; Bolm, Carsten ; Hernández, José G

engleski

Mechanistic Insights on the Mechanosynthesis of Phenytoin, a WHO Essential Medicine

In recent years, mechanochemistry has enriched the toolbox of synthetic chemists, enabling faster and more sustainable access to new materials and existing products, including active pharmaceutical ingredients (APIs). However, molecular-level understanding of most mechanochemical reactions remains limited, delaying the implementation of mechanochemistry in industrial applications. Herein, we have applied in situ monitoring by Raman spectroscopy to the mechanosynthesis of phenytoin, a World Health Organization (WHO) Essential Medicine, enabling the observation, isolation, and characterization of key molecular-migration intermediates involved in the single-step transformation of benzil, urea, and KOH into phenytoin. This work contributes to the elucidation of a reaction mechanism that has been subjected to a number of interpretations over time and paints a clear picture of how mechanosynthesis can be applied and optimized for the preparation of added-value molecules.

ball milling ; in situ monitoring ; mechanochemistry ; phenytoin ; rearrangements

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Podaci o izdanju

28 (13)

2022.

e202104409

5

objavljeno

0947-6539

1521-3765

10.1002/chem.202104409

Povezanost rada

Kemija

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