A metal-organic framework immobilised iridium pincer complex

An iridium pincer complex has been immobilised in the metal-organic framework NU-1000 using a technique called solvent assisted ligand-incorporation (SALI). The framework proved to be stable under the conditions required to activate the iridium complex and spectroscopic investigations showed formati...

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Veröffentlicht in:Chemical science (Cambridge) 2016-01, Vol.7 (8), p.498-4984
Hauptverfasser: Rimoldi, Martino, Nakamura, Akitake, Vermeulen, Nicolaas A, Henkelis, James J, Blackburn, Anthea K, Hupp, Joseph T, Stoddart, J. Fraser, Farha, Omar K
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Sprache:eng
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Zusammenfassung:An iridium pincer complex has been immobilised in the metal-organic framework NU-1000 using a technique called solvent assisted ligand-incorporation (SALI). The framework proved to be stable under the conditions required to activate the iridium complex and spectroscopic investigations showed formation of the catalytically active iridium dihydride. The Ir-pincer modified NU-1000 is an active catalyst for the condensed phase hydrogenation of a liquid alkene (1-decene and styrene) and shows enhanced activity with respect to a homogeneous analogue. Additionally, the Ir-pincer immobilised inside NU-1000 operated as an efficient heterogenous catalyst under flow conditions. An iridium pincer complex has been immobilised in the metal-organic framework NU-1000 . The stable Ir-pincer modified NU-1000 is catalytically active in the hydrogenation of alkenes in condensed phase and under flow conditions.
ISSN:2041-6520
2041-6539
DOI:10.1039/c6sc01376g