2013
DOI: 10.1002/adsc.201300331
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Asymmetric Hydrogenation of β‐Keto Sulfonamides and β‐Keto Sulfones with a Chiral Cationic Ruthenium Diamine Catalyst

Abstract: Optically active β‐hydroxy sulfonamides and β‐hydroxy sulfones are very important building blocks for the preparation of bioactive compounds and pharmaceuticals. In this work, a highly efficient asymmetric hydrogenation of β‐keto sulfonamides and β‐keto sulfones has been developed using the phosphine‐free chiral ruthenium complex Ru(OTf)(TsDPEN)(η6‐p‐cymene) as the catalyst, to afford the corresponding β‐hydroxy sulfonamides and β‐hydroxy sulfones in high yields with excellent optical purities. In addition, a … Show more

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Cited by 36 publications
(18 citation statements)
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“…A derivative of the major enantiomer of the cyclohexylcontaining reduction product 11 a was prepared through reaction with (S)-1-phenylethylisocyate and the X-ray crystallographic structure of this product (Figure 5 A) led to the product configuration assignment of S, in agreement with the comparison of the optical rotation to that reported (see the Supporting Information) and also with the reported precedents. [7][8][9][10][11][12][13] The configurations of 11 f, the OPh derivative of 11 f, and of 11 i were also confirmed by optical rotation comparisons with those reported and the other products were assigned by analogy.…”
Section: Resultssupporting
confidence: 72%
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“…A derivative of the major enantiomer of the cyclohexylcontaining reduction product 11 a was prepared through reaction with (S)-1-phenylethylisocyate and the X-ray crystallographic structure of this product (Figure 5 A) led to the product configuration assignment of S, in agreement with the comparison of the optical rotation to that reported (see the Supporting Information) and also with the reported precedents. [7][8][9][10][11][12][13] The configurations of 11 f, the OPh derivative of 11 f, and of 11 i were also confirmed by optical rotation comparisons with those reported and the other products were assigned by analogy.…”
Section: Resultssupporting
confidence: 72%
“…Zuschriften 14372 www.angewandte.de group favours the position in the transition state in which it is distal from the h 6 -arene of the complex (Figure 5 B). [7][8][9][10][11][12][13] The cyclopropyl group is a particularly compatible substituent in substrates for ATH reactions, with reports having been published of applications to natural product synthesis in which ketones adjacent to cyclopropanes are reduced with high ee values. [16] The sense of induction suggests that it is compatible with an interaction with the h 6 -arene, which accords with our results (Figure 6 A).…”
Section: Angewandte Chemiementioning
confidence: 99%
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“…Communications group favours the position in the transition state in which it is distal from the h 6 -arene of the complex (Figure 5 B). [7][8][9][10][11][12][13] The cyclopropyl group is a particularly compatible substituent in substrates for ATH reactions, with reports having been published of applications to natural product synthesis in which ketones adjacent to cyclopropanes are reduced with high ee values. [16] The sense of induction suggests that it is compatible with an interaction with the h 6 -arene, which accords with our results (Figure 6 A).…”
Section: Angewandte Chemiementioning
confidence: 99%