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Selective hydrogenation of amides using bimetallic Ru/Re and Rh/Re catalysts

Authors :
Beamson, Graham
Papworth, Adam J.
Philipps, Charles
Smith, Andrew M.
Whyman, Robin
Source :
Journal of Catalysis. Mar2011, Vol. 278 Issue 2, p228-238. 11p.
Publication Year :
2011

Abstract

Abstract: Heterogeneous Ru/Re and Rh/Re catalysts, formed in situ from Ru3(CO)12/Re2(CO)10 and Rh6(CO)16/Re2(CO)10 respectively, are effective for the liquid phase hydrogenation of cyclohexanecarboxamide (CyCONH2) to CyCH2NH2 in up to 95% selectivity without the requirement for ammonia to inhibit secondary and tertiary amine formation. Good amide conversions are noted within the reaction condition regimes 50–100bar H2 and ⩾150 (Rh) – 160°C (Ru). Variations in Ru:Re and Rh:Re composition result in only minor changes in product selectivity with no evidence of catalyst deactivation at higher levels of Re. In situ HP-FTIR spectroscopy has shown that catalyst genesis occurs via decomposition of the metal carbonyl precursors. Ex situ characterization, using XRD, XPS and EDX-STEM, has provided evidence for the active components of these catalysts containing bimetallic Ru/Re and Rh/Re nanoclusters, the surfaces of which become significantly oxidized after use in amide reduction. Potential mechanistic pathways for amide hydrogenation are discussed, including initial dehydration to nitrile, a pathway potentially specifically accessible to primary amides, and evidence for often postulated imine intermediates. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
00219517
Volume :
278
Issue :
2
Database :
Academic Search Index
Journal :
Journal of Catalysis
Publication Type :
Academic Journal
Accession number :
58536071
Full Text :
https://doi.org/10.1016/j.jcat.2010.12.009