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Žeradjanin, A. R.; Narangoda, P.; Masa, J.; Schlögl, R.: What Controls Activity Trends of Electrocatalytic Hydrogen Evolution Reaction?-Activation Energy Versus Frequency Factor. ACS Catalysis (19), S. 11597 - 11605 (2022)
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Zhang, J.; Song, X.; Kang, L.; Zhu, J.; Liu, L.; Zhang, Q.; Brett, D. J. L.; Shearing, P. R.; Mai, L.; Parkin, I. P. et al.; He, G.: Stabilizing efficient structures of superwetting electrocatalysts for enhanced urea oxidation reactions. Chem Catalysis 2 (11), S. 3254 - 3270 (2022)
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Zuchan, K.; Nitschke, W.; Baymann, F.; Breuer, N.; Birrell, J.: Thermodynamic landscape of the redox-centres in the electron-confurcating [FeFe]-Hydrogenase (HydABC) of Thermotoga maritima. Biochimica et Biophysica Acta, Bioenergetics 1863, 148757, S. 55 - 55 (2022)
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Zuchan, K.; Nitschke, W.; Baymann, F.; Breuer, N.; Birrell, J. A.: NAD(H)-induced flavosemiquinone stabilization in the electron-confurcating [FeFe]-Hydrogenase (HydABC) of Thermotoga maritima. Biochimica et Biophysica Acta, Bioenergetics 1863 (1863), S. 55 - 55 (2022)

Hochschulschrift - Doktorarbeit (4)

145.
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Goclik, L.: Bimetallic Iron-Ruthenium Nanoparticles on supported ionic liquid phases as selective hydrodeoxygenation and decarboxylation catalysts for the synthesis of phenol and aniline derivatives. Dissertation, 167 S., RWTH Aachen, Aachen (2022)
146.
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Cramer, H. H.: Rational design of transition metal complexes for the catalytic reduction of carbon dioxide: A synthetic, spectroscopic and computational approach. Dissertation, 340 S., RWTH Aachen, Aachen (2022)
147.
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Dieckhöfer, S.: Insights into the confined pore environmet of three-dimensinal electrodes- Operando SECM studies on CO2-reduction gas diffusion electrodes. Dissertation, 184 S. (2022)
148.
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Spiller, N. B.: Electron structure studies of iron-sulfur clusters: from model compounds to the active site of nitrogenase. Dissertation, 223 S., Rheinisch Friedrich-Wilhelms Universität, Bonn (2022)
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