Publikationen von Martina Rüscher

Zeitschriftenartikel (16)

1.
Zeitschriftenartikel
Martini, A.; Timoshenko, J.; Rüscher, M.; Hursán, D.; Monteiro, M. C. O.; Liberra, E.; Roldan Cuenya, B.: Revealing the structure and kinetics of active sites for the electrocatalytic CO2 reduction in Co single atom catalysts using operando XANES and machine learning. Journal of Synchrotron Radiation (angenommen)
2.
Zeitschriftenartikel
Timoshenko, J.; Rettenmaier, C.; Hursán, D.; Rüscher, M.; Ortega, E.; Herzog, A.; Wagner, T.; Bergmann, A.; Hejral, U.; Yoon, A. et al.; Martini, A.; Liberra, E.; Monteiro, M. C. O.; Roldan Cuenya, B.: Reversible Metal Cluster Formation on Nitrogen-doped Carbon: Steering the Electrocatalyst’s Particle Size with Subnanometer Accuracy. (eingereicht)
3.
Zeitschriftenartikel
Murphy, E.; Sun, B.; Rüscher, M.; Liu, Y.; Zang, W.; Guo, S.; Chen, Y.-H.; Hejral, U.; Huang, Y.; Ly, A. et al.; Zenyuk, I. V.; Pan, X.; Timoshenko, J.; Roldan Cuenya, B.; Spoerke, E. D.; Atanassov, P.: Synergizing Fe2O3 nanoparticles on single atom Fe-N-C for nitrate reduction to ammonia at industrial current densities. Advanced Materials, 2401133 (2024)
4.
Zeitschriftenartikel
Bai, L.; Franco, F.; Timoshenko, J.; Rettenmaier, C.; Scholten, F.; Jeon, H.; Yoon, A.; Rüscher, M.; Herzog, A.; Haase, F. et al.; Kühl, S.; Chee, S. W.; Bergmann, A.; Roldan Cuenya, B.: Electrocatalytic Nitrate and Nitrite Reduction toward Ammonia using Cu2O Nanocubes: Active Species and Reaction Mechanisms. Journal of the American Chemical Society 146 (14), S. 9665 - 9678 (2024)
5.
Zeitschriftenartikel
Haase, F.; Ortega, E.; Saddeler, S.; Schmidt, F.; Cruz, D.; Scholten, F.; Rüscher, M.; Martini, A.; Jeon, H.; Herzog, A. et al.; Hejral, U.; Davis, E.; Timoshenko, J.; Knop-Gericke, A.; Lunkenbein, T.; Schulz, S.; Bergmann, A.; Roldan Cuenya, B.: Role of Fe Decoration on the Oxygen Evolving State of Co3O4 Nanocatalysts. Energy & Environmental Science 17 (5), S. 2046 - 2058 (2024)
6.
Zeitschriftenartikel
Hursán, D.; Timoshenko, J.; Ortega, E.; Jeon, H.; Rüscher, M.; Herzog, A.; Rettenmaier, C.; Chee, S. W.; Martini, A.; Koshy, D. et al.; Roldan Cuenya, B.: Reversible Structural Evolution of Metal-Nitrogen-Doped Carbon Catalysts During CO2 Electroreduction: An Operando X-ray Absorption Spectroscopy Study. Advanced Materials 36 (4), 2307809 (2024)
7.
Zeitschriftenartikel
Rettenmaier, C.; Herzog, A.; Casari, D.; Rüscher, M.; Jeon, H.; Kordus, D.; Lopez-Luna, M.; Kühl, S.; Hejral, U.; Davis, E. et al.; Chee, S. W.; Timoshenko, J.; Alexander, D. T.L.; Bergmann, A.; Roldan Cuenya, B.: Operando insights into correlating CO coverage and Cu-Au alloying with the selectivity of Au NP-decorated Cu2O nanocubes during the electrocatalytic CO2 reduction. EES Catalysis 2 (1), S. 311 - 323 (2024)
8.
Zeitschriftenartikel
Yang, F.; Lopez-Luna, M.; Haase, F.; Escalera Lopez, D.; Yoon, A.; Rüscher, M.; Rettenmaier, C.; Jeon, H.; Ortega, E.; Timoshenko, J. et al.; Bergmann, A.; Chee, S. W.; Roldan Cuenya, B.: Spatially and Chemically Resolved Visualization of Fe Incorporation into NiO Octahedra during the Oxygen Evolution Reaction. Journal of the American Chemical Society 145 (39), S. 21465 - 21474 (2023)
9.
Zeitschriftenartikel
Martini, A.; Hursán, D.; Timoshenko, J.; Rüscher, M.; Haase, F.; Rettenmaier, C.; Ortega, E.; Etxebarria, A.; Roldan Cuenya, B.: Tracking the Evolution of Single-Atom Catalysts for the CO2 Electrocatalytic Reduction Using Operando X-ray Absorption Spectroscopy and Machine Learning. Journal of the American Chemical Society 154 (31), S. 17351 - 17366 (2023)
10.
Zeitschriftenartikel
Murphy, E.; Liu, Y.; Matanovic, I.; Rüscher, M.; Huang, Y.; Ly, A.; Guo, S.; Zang, W.; Yan, X.; Martini, A. et al.; Timoshenko, J.; Roldan Cuenya, B.; Zenyuk, I. V.; Pan, X.; Spoerke, E. D.; Atanassov, P.: Elucidating electrochemical nitrate and nitrite reduction over atomically-dispersed transition metal sites. Nature Communications 14, 4554 (2023)
11.
Zeitschriftenartikel
Timoshenko, J.; Haase, F.; Saddeler, S.; Rüscher, M.; Jeon, H.; Herzog, A.; Hejral, U.; Bergmann, A.; Schulz, S.; Roldan Cuenya, B.: Deciphering the Structural and Chemical Transformations of Oxide Catalysts during Oxygen Evolution Reaction Using Quick X-ray Absorption Spectroscopy and Machine Learning. Journal of the American Chemical Society 145 (7), S. 4065 - 4080 (2023)
12.
Zeitschriftenartikel
Liu, H.; Timoshenko, J.; Bai, L.; Li, Q.; Rüscher, M.; Sun, C.; Roldan Cuenya, B.; Luo, J.: Low-Coordination Rhodium Catalysts for an Efficient Electrochemical Nitrate Reduction to Ammonia. ACS Catalysis 13 (2), S. 1513 - 1521 (2023)
13.
Zeitschriftenartikel
Liu, H.; Lang, X.; Zhu, C.; Timoshenko, J.; Rüscher, M.; Bai, L.; Guijarro, N.; Yin, H.; Peng, Y.; Li, J. et al.; Liu, Z.; Wang, W.; Roldan Cuenya, B.; Luo, J.: Efficient Electrochemical Nitrate Reduction to Ammonia with Copper supported Rhodium Cluster and Single-Atom Catalysts. Angewandte Chemie International Edition 61 (23), e202202556 (2022)
14.
Zeitschriftenartikel
Liu, H.; Lang, X.; Zhu, C.; Timoshenko, J.; Rüscher, M.; Bai, L.; Guijarro, N.; Yin, H.; Peng, Y.; Li, J. et al.; Liu, Z.; Wang, W.; Roldan Cuenya, B.; Luo, J.: Efficient Electrochemical Nitrate Reduction to Ammonia with Copper supported Rhodium Cluster and Single-Atom Catalysts. Angewandte Chemie 134 (23), e202202556 (2022)
15.
Zeitschriftenartikel
Rüscher, M.; Herzog, A.; Timoshenko, J.; Jeon, H.; Frandsen, W.; Kühl, S.; Roldan Cuenya, B.: Tracking heterogeneous structural motifs and the redox behaviour of copper-zinc nanocatalysts for the electrocatalytic CO2 reduction using operando time resolved spectroscopy and machine learning. Catalysis Science & Technology 12 (9), S. 3028 - 3043 (2022)
16.
Zeitschriftenartikel
Feng, X.; Jena, H.; Krishnaraj, C.; Arenas-Esteban, D.; Leus, K.; Wang, G.; Sun, J.; Rüscher, M.; Timoshenko, J.; Roldan Cuenya, B. et al.; Bals, S.; Van Der Voort, P.: Creation of Exclusive Artificial Cluster Defects by Selective Metal Removal in the (Zn, Zr) Mixed-metal UiO-66. Journal of the American Chemical Society 143 (51), S. 21511 - 21518 (2021)
Zur Redakteursansicht