Iridium-catalyzed highly chemoselective and efficient reduction of nitroalkenes to nitroalkanes in water
An iridium-catalyzed highly chemoselective and efficient transfer hydrogenation reduction of structurally diverse nitroalkenes was realized at very low catalyst loading (S/C = up to 10000 or 20 000), using formic acid or sodium formate as a traceless hydride donor in water. Excellent functionality t...
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Veröffentlicht in: | Green chemistry : an international journal and green chemistry resource : GC 2021-08, Vol.23 (16), p.65-658 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | An iridium-catalyzed highly chemoselective and efficient transfer hydrogenation reduction of structurally diverse nitroalkenes was realized at very low catalyst loading (S/C = up to 10000 or 20 000), using formic acid or sodium formate as a traceless hydride donor in water. Excellent functionality tolerance is also observed. The turnover number and turnover frequency of the catalyst reach as high as 18 600 and 19 200 h
−1
, respectively. An inert atmosphere protection is not required. The reactivities of nitroalkenes are dependent on their substitution pattern, and the pH value is a key factor to accomplish the complete conversion and excellent chemoselectivity. Purification of products is achieved by simple extraction without column chromatography. The reduction procedure is facilely amplified to 10 g scale at 10 000 S/C ratio. The potential of this green reduction in enantioselective hydrogenation has been demonstrated.
An iridium-catalysed highly chemoselective and efficient transfer hydrogenation of nitroalkenes to nitroalkanes in water was achieved. |
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ISSN: | 1463-9262 1463-9270 |
DOI: | 10.1039/d1gc01907d |