Ilie, A.; Roiban, G.-D.; Reetz, M. T. Di–tert–butyl N,N-diethylphosphoramidite as an Air Stable Ligand for Suzuki-Miyaura and Buchwald-Hartwig Reactions. ChemistrySelect2017, 2, 1392–1397.
Ilie, A.; Agudo Torres, R.; Roiban, G.-D.; Reetz, M. T. P450-catalyzed regio- and stereoselective oxidative hydroxylation of disubstituted cyclohexanes: creation of three centers of chirality in a single CH-activation event. Tetrahedron2015, 71, 470–475.
Roiban, G.-D.; Reetz, M. T. Expanding the toolbox of organic chemists: directed evolution of P450 monooxygenases as catalysts in regio- and stereoselective oxidative hydroxylation. Chemical Communications2015, 51, 2208–2224.
Roiban, G.-D.; Ilie, A.; Reetz, M. T. The Chelation-controlled Mukaiyama Aldol Reaction of Chiral α- and β-Alkoxy Aldehydes. Chemistry Letters2014, 43 (2014), 2–10.
Roiban, G.-D.; Agudo Torres, R.; Reetz, M. T. Cytochrome P450 Catalyzed Oxidative Hydroxylation of Achiral Organic Compounds with Simultaneous Creation of Two Chirality Centers in a Single C-H Activation Step. Angewandte Chemie International Edition2014, 53, 8659–8663.
Roiban, G.-D.; Mehler, G.; Reetz, M. T. Palladium-Catalysed Amination of Aryl- and Heteroaryl Halides Using tert-Butyl Tetraisopropylphosphorodiamidite as an Easily Accessible and Air-Stable Ligand. European Journal of Organic Chemistry2014, 2014, 2070–2076.
Roiban, G.-D.; Agudo Torres, R.; Reetz, M. T. Stereo- and regioselectivity in the P450-catalyzed oxidative tandem difunctionalization of 1-methylcyclohexene. Tetrahedron2013, 69, 5306–5311.
Roiban, G.-D.; Reetz, M. T. Enzyme Promiscuity: Using a P450 Enzyme as a Carbene Transfer Catalyst. Angewandte Chemie International Edition: a journal of the Gesellschaft Deutscher Chemiker2013, 52, 5439–5440.
Agudo Torres, R.; Roiban, G.-D.; Reetz, M. T. Induced Axial Chirality in Biocatalytic Asymmetric Ketone Reduction. Journal of the American Chemical Society2013, 135, 1665–1668.
Zhang, Z.-G.; Roiban, G.-D.; Acevedo, J. P.; Polyak, I.; Reetz, M. T. A New Type of Stereoselectivity in Baeyer–Villiger Reactions: Access to E- and Z-Olefins. Advanced Synthesis & Catalysis2013, 355, 99–106.
Agudo Torres, R.; Roiban, G.-D.; Reetz, M. T. Achieving Regio- and Enantioselectivity of P450-Catalyzed Oxidative CH Activation of Small Functionalized Molecules by Structure-Guided Directed Evolution. ChemBioChem: A European Journal of Chemical Biology2012, 13, 1465–1473.
Den neuen Typ von OER-Elektrokatalysatoren entdeckten PD Dr. Harun Tüysüz (Max-Planck-Institut für Kohlenforschung) sowie Prof. Dr. Claudia Felser (Max-Planck-Institut für Chemische Physik fester Stoffe) und ihre Teams.
Gemeinsam mit seinem Projektpartner Prof. Dr. Joseph Moran von der Universität Straßburg erhielt er nun den Forcheurs Jean-Marie Lehn Preis 2020 für die gemeinsamen Arbeiten zur Katalyse in der präbiotischen Chemie.
Auszeichnung erfolgt für seine herausragenden Arbeiten zur Entwicklung von Katalysatoren, die sowohl für chemische Synthesen als auch zur Energieumwandlung genutzt werden können.