The stereoselective electroreductive intramolecular coupling of chiral diimines of aromatic aldehydes with trans-1,2-diaminocyclohexane for the synthesis of enantiopure tetrasubstituted piperazines has been investigated by an electrochemical approach. The methodology was successfully developed under both batch and continuous flow conditions, and afforded enantiomerically pure products with complete stereoselectivity. Substrates bearing electron-donating or electron-withdrawing groups on the aromatic rings provided good to excellent yields, indicating that both types of substituents are well tolerated under the reaction conditions. Although modest yields were obtained under flow conditions, the continuous process afforded higher productivities and space-time yields than the batch reactions due to a short residence time. This work provides a mild, efficient, and scalable alternative to traditional methods for the synthesis of tetrasubstituted enantiopure piperazines, with potential applications in the preparation of chiral ligands.

Stereoselective electrochemical intramolecular imino-pinacol reaction: a straightforward entry to enantiopure piperazines / M. Gazzotti, F. Medici, V. Chiroli, L. Raimondi, S. Rossi, M. Benaglia. - In: BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY. - ISSN 1860-5397. - 21:(2025 Sep 12), pp. 1897-1908. [10.3762/bjoc.21.147]

Stereoselective electrochemical intramolecular imino-pinacol reaction: a straightforward entry to enantiopure piperazines

M. Gazzotti
Co-primo
;
F. Medici
Co-primo
;
V. Chiroli
Secondo
;
L. Raimondi;S. Rossi
Penultimo
;
M. Benaglia
Ultimo
2025

Abstract

The stereoselective electroreductive intramolecular coupling of chiral diimines of aromatic aldehydes with trans-1,2-diaminocyclohexane for the synthesis of enantiopure tetrasubstituted piperazines has been investigated by an electrochemical approach. The methodology was successfully developed under both batch and continuous flow conditions, and afforded enantiomerically pure products with complete stereoselectivity. Substrates bearing electron-donating or electron-withdrawing groups on the aromatic rings provided good to excellent yields, indicating that both types of substituents are well tolerated under the reaction conditions. Although modest yields were obtained under flow conditions, the continuous process afforded higher productivities and space-time yields than the batch reactions due to a short residence time. This work provides a mild, efficient, and scalable alternative to traditional methods for the synthesis of tetrasubstituted enantiopure piperazines, with potential applications in the preparation of chiral ligands.
chiral piperazines; electrosynthesis; flow chemistry; green chemistry; imino-pinacol coupling
Settore CHEM-05/A - Chimica organica
   MUSA - Multilayered Urban Sustainability Actiona
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   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA

   Flow chemistry, photo and organocatalysis: powerful tools for the development of technology-driven sustainable strategies to alpha and beta amination of carbonyls and carboxylic acids derivatives (TECHNO)
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   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA
   20222Z8CKP_001
12-set-2025
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1183802
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