Deaminative coupling of benzylamines and arylboronic acids
Sirvinskaite G, Reisenbauer J, Morandi B. 2023. Deaminative coupling of benzylamines and arylboronic acids. Chemical Science. 14(7), 1709–1714.
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Author
Sirvinskaite, Giedre;
Reisenbauer, Julia C.ISTA;
Morandi, Bill
Abstract
A metal-free deaminative coupling of non-prefunctionalised benzylamines and arylboronic acids is reported. In this operationally simple reaction, a primary amine in benzylamine is converted into a good leaving group in situ using inexpensive and commercially available isoamyl nitrite as a nitrosating reagent. Lewis-acidic arylboronic acids are shown to replace mineral acids such as HCl or HBF4 that are conventionally used in the preparation of aryl diazonium salts. This unlocked the formation of the corresponding diarylmethanes by forging a new C–C bond in good yields.
Publishing Year
Date Published
2023-01-13
Journal Title
Chemical Science
Publisher
Royal Society of Chemistry
Volume
14
Issue
7
Page
1709-1714
ISSN
eISSN
IST-REx-ID
Cite this
Sirvinskaite G, Reisenbauer J, Morandi B. Deaminative coupling of benzylamines and arylboronic acids. Chemical Science. 2023;14(7):1709-1714. doi:10.1039/d2sc06055h
Sirvinskaite, G., Reisenbauer, J., & Morandi, B. (2023). Deaminative coupling of benzylamines and arylboronic acids. Chemical Science. Royal Society of Chemistry. https://doi.org/10.1039/d2sc06055h
Sirvinskaite, Giedre, Julia Reisenbauer, and Bill Morandi. “Deaminative Coupling of Benzylamines and Arylboronic Acids.” Chemical Science. Royal Society of Chemistry, 2023. https://doi.org/10.1039/d2sc06055h.
G. Sirvinskaite, J. Reisenbauer, and B. Morandi, “Deaminative coupling of benzylamines and arylboronic acids,” Chemical Science, vol. 14, no. 7. Royal Society of Chemistry, pp. 1709–1714, 2023.
Sirvinskaite G, Reisenbauer J, Morandi B. 2023. Deaminative coupling of benzylamines and arylboronic acids. Chemical Science. 14(7), 1709–1714.
Sirvinskaite, Giedre, et al. “Deaminative Coupling of Benzylamines and Arylboronic Acids.” Chemical Science, vol. 14, no. 7, Royal Society of Chemistry, 2023, pp. 1709–14, doi:10.1039/d2sc06055h.
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