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Evert Jan Meijer

Affiliations: 
University of Amsterdam, Amsterdam, Netherlands 
Area:
Computational Chemistry
Website:
http://molsim.chem.uva.nl/users/meijer/index.html
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"Evert Jan Meijer"
Bio:

Prof. dr. E.J. Meijer at the Album Academicum of the University of Amsterdam

Mean distance: 9.87
 
SNBCP
Cross-listing: MathTree

Parents

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Michiel Sprik grad student Amsterdam
Daan Frenkel grad student 1993 Utrecht
 (Computer simulation of molecular solids and colloidal dispersions)

Children

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Xiandong Liu grad student Amsterdam
Nitish Govindarajan grad student 2016-2020 Amsterdam
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Publications

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Govindarajan N, Sinha V, Trincado M, et al. (2020) An In‐Depth Mechanistic Study of Ru‐Catalysed Aqueous Methanol Dehydrogenation and Prospects for Future Catalyst Design Chemcatchem. 12: 2610-2621
Zhang C, Liu X, Lu X, et al. (2019) Understanding the heterogeneous nucleation of heavy metal phyllosilicates on clay edges with first principles molecular dynamics. Environmental Science & Technology
Govindarajan N, Meijer EJ. (2019) Elucidating cation effects in homogeneously catalyzed formic acid dehydrogenation. Faraday Discussions
Govindarajan N, Meijer EJ. (2019) Modeling the Catalyst Activation Step in a Metal–Ligand Radical Mechanism Based Water Oxidation System Inorganics. 7: 62
Yan N, Detz RJ, Govindarajan N, et al. (2019) Selective surface functionalization generating site-isolated Ir on a MnOx/N-doped carbon composite for robust electrocatalytic water oxidation Journal of Materials Chemistry A. 7: 23098-23104
Govindarajan N, Koper MTM, Meijer EJ, et al. (2019) Outlining the Scaling-Based and Scaling-Free Optimization of Electrocatalysts Acs Catalysis. 9: 4218-4225
Sinha V, Govindarajan N, de Bruin B, et al. (2018) How Solvent Affects C-H Activation and Hydrogen Production Pathways in Homogeneous Ru-Catalyzed Methanol Dehydrogenation Reactions. Acs Catalysis. 8: 6908-6913
Govindarajan N, Tiwari A, Ensing B, et al. (2018) Impact of the Ligand Flexibility and Solvent on the O-O Bond Formation Step in a Highly Active Ruthenium Water Oxidation Catalyst. Inorganic Chemistry
Govindarajan N, García-Lastra JM, Meijer EJ, et al. (2018) Does the breaking of adsorption-energy scaling relations guarantee enhanced electrocatalysis? Current Opinion in Electrochemistry. 8: 110-117
Albertazzi L, Martinez-Veracoechea FJ, Leenders CM, et al. (2013) Spatiotemporal control and superselectivity in supramolecular polymers using multivalency. Proceedings of the National Academy of Sciences of the United States of America. 110: 12203-8
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