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    <title>Towards sustainability in hydrogenation and hydroformylation reactions</title>
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    <namePart>Beller, Matthias</namePart>
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  <abstract type="Summary">The work focuses on the usage of the base-metal cobalt in order to endeavor a replacement of noble-metal based industrial and academic systems. An earlier published system for the cobalt-based hydrogenation of carbon dioxide was improved by ligand-modification to a 2.5-fold turnover number. Also, the activity of this system in the hydrogenation of organic carbonates to the corresponding alcohols was demonstrated for the first time. Besides, supported cobalt nanoparticles have been proven to be active for selective olefin hydrogenations and investigated for heterogeneous hydroformylations.&lt;eng&gt;</abstract>
  <abstract type="Summary">Diese Arbeit befasst sich mit der Anwendung des günstigen, unedlen Metalls Kobalt in industriellen und akademischen Systemen. Die Produktivität eines bekannten, Kobalt-basierten Systems für die homogene Hydrierung von CO2 wurde durch Modifizierung des Liganden mehr als verdoppelt. Des Weiteren wurde die homogene Hydrierung cyclischer und acyclischer Carbonate zu den entsprechenden Alkoholen erstmals mit Kobalt ermöglicht. Ferner wurden Kobalt-Nanopartikel auf anorganischen Trägern oder Kohle in der selektiven Olefin-Hydrierung angewandt und für die heterogene Hydroformylierung getestet.&lt;ger&gt;</abstract>
  <note type="statement of responsibility">vorgelegt von Florian Scharnagl</note>
  <note>Enthält Zeitschriftenartikel</note>
  <note>GutachterInnen: Matthias Beller (Leibniz-Institut für Katalyse e.V.) ; Bas de Bruin (University of Amsterdam)</note>
  <note type="thesis">Dissertation Universität Rostock 2019</note>
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      <title>Towards sustainability in hydrogenation and hydroformylation reactions</title>
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      <namePart>Scharnagl, Florian, 1991 - </namePart>
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