Peter Strasser (Chemiker)

Peter Strasser (* 1969 i​n Heilbronn) i​st ein deutscher Chemiker u​nd Professor für Technische Chemie a​n der TU Berlin.[1]

Leben

Strasser studierte Chemie a​n der Universität Tübingen, Stanford University (John Ross) u​nd an d​er Universität Pisa (Fausto Calderazzo) u​nd promovierte 1999 a​m Fritz-Haber-Institut d​er Max-Planck-Gesellschaft i​n Berlin b​ei Gerhard Ertl. Danach w​urde er Postdoctoral Associate u​nd später Senior Staff Scientist b​ei Symyx Technologies Inc. i​n Santa Clara, Kalifornien, b​evor er Assistant Professor o​f Chemical Engineering a​n der Universität Houston wurde. Seit 2007 i​st er Professor a​n der TU Berlin u​nd leitet d​en Lehrstuhl für Technische Elektrochemie, Nanomaterialien u​nd Elektrokatalyse.

Der Schwerpunkt seiner Arbeitsgruppe l​iegt auf d​er Erforschung atomarer/molekularer Zusammenhänge d​er Struktur, Komposition u​nd oberflächenkatalytischen Reaktivität v​on Katalysatoren für gasphasenkatalytische u​nd elektrokatalytische Prozesse. Dabei werden material-chemische Fragestellungen erforscht, d​ie die Grundlage für elektrochemische Energiespeicher- u​nd Wandlungsprozesse bilden. Diese werden z​um Beispiel i​n regenerativen Energiesystemkomponenten w​ie Brennstoffzellen, Batterien, Wasserelektrolyseure o​der solaren photoelektrochemischen Reaktoren z​ur Umwandlung v​on CO2 i​n Brennstoffe u​nd Chemikalien eingesetzt.

Auszeichnungen (Auswahl)

Clarivate Highly Cited Researcher a​uf dem Gebiet Chemie 2018, 2019, 2020 u​nd 2021.[2][3]

Veröffentlichungen (Auswahl)

  • Wang, X.; Klingan, K.; Klingenhof, M.; Möller, T.; Araujo, J. F.; Martens, I.; Bagger, A.; Jiang, S.; Rossmeisl, J.; Dau, H.; Strasser, P., Morphology and Mechanism of Highly Selective CuO Nanosheet Catalysts for CO2 Electroreduction. Nature Commun. 2021, 12, 794.
  • Tong, W.; Forster, M.; Dionigi, F.; Dresp, S.; Sadeghi Erami, R.; Strasser, P.; Cowan, A. J.; Farràs, P., Electrolysis of low-grade and saline surface water. Nature Energy 2020, 5, 367-377.
  • Primbs, M.; Sun, Y.; Roy, A.; Malko, D.; Mehmood, A.; Sougrati, M.-T.; Blanchard, P.-Y.; Granozzi, G.; Kosmala, T.; Daniel, G.; Atanassov, P.; Sharman, J.; Durante, C.; Kucernak, A.; Jones, D.; Jaouen, F.; Strasser, P., Establishing reactivity descriptors for platinum group metal (PGM)-free Fe–N–C catalysts for PEM fuel cells. Energ Environ Sci 2020, 13 (8), 2480-2500.
  • Ott, S.; Orfanidi, A.; Schmies, H.; Anke, B.; Nong, H. N.; Hübner, J.; Gernert, U.; Gliech, M.; Lerch, M.; Strasser, P., Ionomer distribution control in porous carbon-supported catalyst layers for high-power and low Pt-loaded proton exchange membrane fuel cells. Nat Mater 2020, 19, 77-85.
  • Nong, H. N.; Falling, L. J.; Bergmann, A.; Klingenhof, M.; Tran, H. P.; Spori, C.; Mom, R.; Timoshenko, J.; Zichittella, G.; Knop-Gericke, A.; Piccinin, S.; Perez-Ramirez, J.; Cuenya, B. R.; Schlogl, R.; Strasser, P.; Teschner, D.; Jones, T. E., Key role of chemistry versus bias in electrocatalytic oxygen evolution. Nature 2020, 587 (7834), 408-413.
  • Luo, F.; Roy, A.; Silvioli, L.; Cullen, D. A.; Zitolo, A.; Sougrati, M. T.; Oguz, I. C.; Mineva, T.; Teschner, D.; Wagner, S.; Wen, J.; Dionigi, F.; Kramm, U. I.; Rossmeisl, J.; Jaouen, F.; Strasser, P., P-block single-metal-site tin/nitrogen-doped carbon fuel cell cathode catalyst for oxygen reduction reaction. Nat Mater 2020, 19 (11), 1215-1223.
  • Dresp, S.; Ngo Thanh, T.; Klingenhof, M.; Brueckner, S.; Hauke, P.; Strasser, P., Efficient direct seawater electrolysers using selective alkaline NiFe-LDH as OER catalyst in asymmetric electrolyte feeds. Energ Environ Sci 2020, 13, 1725-1729.
  • Dionigi, F.; Zeng, Z.; Sinev, I.; Merzdorf, T.; Deshpande, S.; Lopez, M. B.; Kunze, S.; Zegkinoglou, I.; Sarodnik, H.; Fan, D.; Bergmann, A.; Drnec, J.; Araujo, J. F.; Gliech, M.; Teschner, D.; Zhu, J.; Li, W. X.; Greeley, J.; Cuenya, B. R.; Strasser, P., In-situ structure and catalytic mechanism of NiFe and CoFe layered double hydroxides during oxygen evolution. Nat Commun 2020, 11 (1), 2522.
  • Wang, X.; de Araújo, J. F.; Ju, W.; Bagger, A.; Schmies, H.; Kühl, S.; Rossmeisl, J.; Strasser, P., Mechanistic reaction pathways of enhanced ethylene yields during electroreduction of CO2–CO co-feeds on Cu and Cu-tandem electrocatalysts. Nature Nanotechnology 2019, 14, 1063-1070.
  • Moller, T.; Ju, W.; Bagger, A.; Wang, X. L.; Luo, F.; Thanh, T. N.; Varela, A. S.; Rossmeisl, J.; Strasser, P., Efficient CO2 to CO electrolysis on solid Ni-N-C catalysts at industrial current densities. Energ Environ Sci 2019, 12 (2), 640-647.
  • Beermann, V.; Holtz, M. E.; Padgett, E.; de Araujo, J. F.; Muller, D. A.; Strasser, P., Real-time imaging of activation and degradation of carbon supported octahedral Pt-Ni alloy fuel cell catalysts at the nanoscale using in situ electrochemical liquid cell STEM. Energ Environ Sci 2019, 12 (8), 2476-2485.
  • Nong, H. N.; Reier, T.; Oh, H.-S.; Gliech, M.; Paciok, P.; Vu, T. H. T.; Teschner, D.; Heggen, M.; Petkov, V.; Schlögl, R.; Jones, T.; Strasser, P., A unique oxygen ligand environment facilitates water oxidation in hole-doped IrNiO x core–shell electrocatalysts. Nature Catalysis 2018, 1 (11), 841-851.
  • Chattot, R.; Le Bacq, O.; Beermann, V.; Kühl, S.; Herranz, J.; Henning, S.; Kühn, L.; Asset, T.; Guétaz, L.; Renou, G.; Drnec, J.; Bordet, P.; Pasturel, A.; Eychmüller, A.; Schmidt, T. J.; Strasser, P.; Dubau, L.; Maillard, F., Surface distortion as a unifying concept and descriptor in oxygen reduction reaction electrocatalysis. Nat Mater 2018, 17 (9), 827-833.
  • Bergmann, A.; Jones, T. E.; Martinez Moreno, E.; Teschner, D.; Chernev, P.; Gliech, M.; Reier, T.; Dau, H.; Strasser, P., Unified structural motifs of the catalytically active state of Co(oxyhydr)oxides during the electrochemical oxygen evolution reaction. Nature Catalysis 2018, 1, 711-719.
  • Koketsu, T.; Ma, J.; Morgan, B. J.; Body, M.; Legein, C.; Dachraoui, W.; Giannini, M.; Demortière, A.; Salanne, M.; Dardoize, F.; Groult, H.; Borkiewicz, O. J.; Chapman, K. W.; Strasser, P.; Dambournet, D., Reversible magnesium and aluminium ions insertion in cation-deficient anatase TiO2. Nat Mater 2017, 16, 1142-1148.
  • Ju, W.; Bagger, A.; Hao, G.-P.; Varela, A. S.; Sinev, I.; Bon, V.; Cuenya, B. R.; Kaskel, S.; Rossmeisl, J.; Strasser, P., Understanding activity and selectivity of metal-nitrogen-doped carbon catalysts for electrochemical reduction of CO 2. Nat Commun 2017, 8, 944.
  • Strasser, P., Free Electrons to Molecular Bonds and Back: Closing the Energetic Oxygen Reduction (ORR)-Oxygen Evolution (OER) Cycle Using Core-Shell Nanoelectrocatalysts Accounts of Chemical Research 2016, 49 (11), 2658-2668.
  • Mistry, H.; Varela, A. S.; Bonifacio, C. S.; Zegkinoglou, I.; Sinev, I.; Choi, Y.-W.; Kisslinger, K.; Stach, E. A.; Yang, J. C.; Strasser, P., Highly selective plasma-activated copper catalysts for carbon dioxide reduction to ethylene. Nat Commun 2016, 7, 12123.
  • Sahraie, N. R.; Kramm, U. I.; Steinberg, J.; Zhang, Y.; Thomas, A.; Reier, T.; Paraknowitsch, J.-P.; Strasser, P., Quantifying the density and utilization of active sites in non-precious metal oxygen electroreduction catalysts. Nat Commun 2015, 6, 8618.
  • Nong, H. N.; Oh, H.-S.; Reier, T.; Willinger, E.; Willinger, M.-G.; Petkov, V.; Teschner, D.; Strasser, P., Oxide-Supported IrNiOx Core–Shell Particles as Efficient, Cost-Effective, and Stable Catalysts for Electrochemical Water Splitting. Angewandte Chemie International Edition 2015, 54 (10), 2975-2979.
  • Han, B. H.; Carlton, C. E.; Kongkanand, A.; Kukreja, R. S.; Theobald, B. R.; Gan, L.; O'Malley, R.; Strasser, P.; Wagner, F. T.; Shao-Horn, Y., Record activity and stability of dealloyed bimetallic catalysts for proton exchange membrane fuel cells. Energ Environ Sci 2015, 8, 258-266.
  • Bergmann, A.; Martinez-Moreno, E.; Teschner, D.; Chernev, P.; Gliech, M.; de Araujo, J. F.; Reier, T.; Dau, H.; Strasser, P., Reversible amorphization and the catalytically active state of crystalline Co3O4 during oxygen evolution. Nat Commun 2015, 6, Article number: 8625.
  • Reske, R.; Mistry, H.; Behafarid, F.; Roldan Cuenya, B.; Strasser, P., Particle Size Effects in the Catalytic Electroreduction of CO2 on Cu Nanoparticles. J Am Chem Soc 2014, 136 (19), 6978-6986.
  • Nong, H. N.; Gan, L.; Willinger, E.; Teschner, D.; Strasser, P., IrOx core-shell nanocatalysts for cost- and energy-efficient electrochemical water splitting. Chem Sci 2014, 5 (8), 2955-2963.
  • Gan, L.; Cui, C.; Heggen, M.; Dionigi, F.; Rudi, S.; Strasser, P., Element-specific anisotropic growth of shaped platinum alloy nanocrystals. Science 2014, 346, 1502-1506.
  • Cui, C.; Gan, L.; Heggen, M.; Rudi, S.; Strasser, P., Compositional segregation in shaped Pt alloy nanoparticles and their structural behaviour during electrocatalysis. Nat Mater 2013, 12 (8), 765-771.
  • Sanabria-Chinchilla, J.; Asazawa, K.; Sakamoto, T.; Yamada, K.; Tanaka, H.; Strasser, P., Noble Metal-Free Hydrazine Fuel Cell Catalysts: EPOC Effect in Competing Chemical and Electrochemical Reaction Pathways. J Am Chem Soc 2011, 133 (14), 5425-5431.
  • Strasser, P.; Koh, S.; Anniyev, T.; Greeley, J.; More, K.; Yu, C.; Liu, Z.; Kaya, S.; Nordlund, D.; Ogasawara, H.; Toney, M. F.; Nilsson, A., Lattice-strain control of the activity in dealloyed core–shell fuel cell catalysts. Nat Chem 2010, 2, 454-460.
  • Strasser, P., Dealloyed Core-Shell Fuel Cell Electrocatalysts. Rev Chem Eng 2009, 25 (4), 255-295.
  • Neyerlin, K. C.; Bugosh, G.; Forgie, R.; Liu, Z.; Strasser, P., Combinatorial Study of High-Surface-Area Binary and Ternary Electrocatalysts for the Oxygen Evolution Reaction. J Electrochem Soc 2009, 156 (3), B363-B369.
  • Strasser, P., Combinatorial optimization of ternary Pt alloy catalysts for the electrooxidation of methanol. J Comb Chem 2008, 10 (2), 216-224.
  • Srivastava, R.; Mani, P.; Hahn, N.; Strasser, P., Efficient Oxygen Reduction Fuel Cell Electrocatalysis on Voltammetrically Dealloyed Pt–Cu–Co Nanoparticles. Angewandte Chemie International Edition 2007, 46 (47), 8988-8991.
  • Koh, S.; Strasser, P., Electrocatalysis on bimetallic surfaces: Modifying catalytic reactivity for oxygen reduction by voltammetric surface dealloying. J. Am. Chem. Soc. 2007, 129, 12624.
  • Strasser, P.; Gorer, S.; Fan, Q.; Chondroudis, K.; Cendak, K.; Giaquinta, D.; Devenney, M., Combinatorial Synthesis and High Throughput Screening of Fuel Cell Electrocatalysts. In High-Throughput Screening in Chemical Catalysis, Hagemeyer, A.; Strasser, P.; Volpe, A. F., Eds. Wiley VCH: Weinheim, 2004; p 271. [https://www.wiley.com/en-us/High+Throughput+Screening+in+Chemical+Catalysis%3A+Technologies%2C+Strategies+and+Applications-p-9783527604302
  • Hagemeyer, A.; Strasser, P.; Volpe, A. F., High-Throughput Screening in Chemical Catalysis - Technologies, Strategies and Applications. Wiley VCH: Weinheim, 2004].
  • Strasser, P.; Fan, Q.; Devenney, M.; Weinberg, W. H.; Liu, P.; Norskov, J. K., High throughput experimental and theoretical predictive screening of materials - A comparative study of search strategies for new fuel cell anode catalysts. J Phys Chem B 2003, 107 (40), 11013-11021.
  • Christoph, J.; Strasser, P.; Eiswirth, M.; Ertl, G., Remote triggering of waves in an electrochemical system. Science 1999, 284 (5412), 291-293.
  • Eiswirth, M.; Burger, J.; Strasser, P.; Ertl, G., Oscillating Langmuir-Hinshelwood mechanisms. J Phys Chem. 1996, 100 (49), 19118-19123.

Einzelnachweise

  1. Homepage des Instituts für technische Chemie der TU-Berlin, abgerufen am 17. November 2017.
  2. Highly Cited Researchers 2020: TU-Forscher sind international prägend. TU Berlin, abgerufen am 17. Oktober 2021.
  3. Highly Cited Researchers 2021 recipients (en) Clarivate. Abgerufen am 17. November 2021.
  4. Pressebericht der DECHEMA zur Verleihung der Otto-Roelen-Medaille an Peter Strasser, abgerufen am 11. April 2021
  5. Webseite des Fachgebiets "Elektrochemie" der TU Berlin
  6. IDW - Informationsdienst Wissenschaft, abgerufen am 11. April 2021
  7. Presse bericht der TU Berlin zur Verleihung des Brian Conway Preises an Prof. Dr. Peter Strasser, abgerufen am 11. April 2021
  8. Electrochem2021. In: rsc.org. Royal Society of Chemistry, abgerufen am 8. Juli 2021 (englisch).
  9. Scope of the Forum. Abgerufen am 4. Juni 2021.
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