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        rosdok/id0000089766775279XMODS updated during RosDok migration in June 2021DissertationHochschulschrift1014975603ShaolinZhou1976-VerfasserInautDevelopment of New Homogeneous (Enantioselective)Hydrogenation Catalysts Based on Bio‐relevant MetalsenProf. Dr.MatthiasBellerAkademischeR BetreuerIndgsProf. Dr.AminBörnerAkademischeR BetreuerIndgsProf. Dr.ChristophSchneiderAkademischeR BetreuerIndgs2147083-2Universität RostockMathematisch-Naturwissenschaftliche FakultätGrad-verleihende Institutiondgg10.18453/rosdok_id00000897http://purl.uni-rostock.de/rosdok/id00000897urn:nbn:de:gbv:28-diss2011-0127-7540 ChemieMathematisch-Naturwissenschaftliche Fakultätfrei zugänglich (Open Access)Lizenz Metadaten: CC0Nutzungsrechte erteiltalle Rechte vorbehaltenUniversität RostockRostock2011monographic20112011Universitätsbibliothek RostockRostock20112011This thesis presents the study and development of new catalysts based on first row transition metals for the (asymmetric) reduction of different C=O and C=N bonds. An iron cluster catalyst with a chiral tetradentate P2N2 ligand was discovered to catalyze the asymmetric transfer hydrogenation of N-diphenylphosphinylketimines. Subsequently the combination of a chiral Brønsted acid with a well-defined Shvo type iron complex creates an active catalyst which could hydrogenate a variety of N-aryl ketimines to amines using molecular hydrogen. Finally, an iron cluster catalyst was discovered to catalyze the reduction of amides with inexpensive PMHS.catalysisreductioniminesamidesironUniversitätsbibliothek Rostockhttp://purl.uni-rostock.de/rosdok/id00000897
      
    
  
  
    
      2011-08-10T16:46:00.092Z
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