Palladium-catalysed aminosulfonylation of aryl-, alkenyl- and heteroaryl halides: scope of the three-component synthesis of N-aminosulfonamides.

Symplectic ID
316211
Source
PubMed
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Saturday, 4 July, 2026 - 22:10
DOI
10.1039/c2ob07034k
Publication Date
Monday, 28 May, 2012
First Page
4007
Last Page
4014
Keywords
Alkenes
Catalysis
Halogens
Molecular Structure
Palladium
Sulfonic Acids
Authors
Emmett, EJ
Richards-Taylor, CS
Nguyen, B
Garcia-Rubia, A
Hayter, BR
Willis, MC
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Abstract
By using DABCO·(SO(2))(2), DABSO, as a solid bench-stable SO(2)-equivalent, the palladium-catalysed aminosulfonylation of aryl-, alkenyl- and heteroaryl halides has been achieved. N,N-Dialkylhydrazines are employed as the N-nucleophiles and provide N-aminosulfonamides as the products in good to excellent yields. The reactions are operationally simple to perform, requiring only a slight excess of SO(2) (1.2-2.2 equiv.), and tolerate a variety of substituents on the halide coupling partner. Variation of the hydrazine component is also demonstrated. The use of N,N-dibenzylhydrazine as the N-nucleophile delivers N-aminosulfonamide products that can be converted into the corresponding primary sulfonamides using a high-yielding, telescoped, deprotection sequence. The ability to employ hydrazine·SO(2) complexes as both the N-nucleophile and SO(2) source is also illustrated.
Journal Title
Org Biomol Chem
eISSN
1477-0539
Volume
10
Issue
20
ID at Source
22407213
Publication Status
Published
Open access
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chem0368