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Lars C. Grabow, Ph.D

Affiliations: 
Chemical and Biomolecular Engineering University of Houston, Houston, TX, United States 
Area:
Computational Catalysis, Interface Chemistry
Website:
http://grabow.chee.uh.edu
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"Lars Grabow"
Mean distance: 9.99
 
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Publications

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Mahdavi-Shakib A, Kumar KBS, Whittaker TN, et al. (2021) Kinetics of H2 Adsorption at the Metal-Support Interface of Au/TiO2 Catalysts probed by Broad Background IR Absorbance. Angewandte Chemie (International Ed. in English)
Kanchari Bavajigari SK, Whittaker T, Peterson C, et al. (2020) Water Poisons H2 Activation at the Au-TiO2 Interface by Slowing Proton and Electron Transfer between Au and Titania. Journal of the American Chemical Society
Whittaker T, Kanchari Bavajigari SK, Peterson C, et al. (2018) H2 Oxidation over Supported Au Nanoparticle Catalysts: Evidence for Heterolytic H2 Activation at the Metal-Support Interface. Journal of the American Chemical Society
Yuan Q, Doan HA, Grabow LC, et al. (2017) Finite Size Effects in Sub-Monolayer Catalysts investigated by CO Electrosorption on PtsML/Pd(100). Journal of the American Chemical Society
Goulas KA, Sreekumar S, Song Y, et al. (2016) Synergistic Effects in Bimetallic Palladium-Copper Catalysts Improve Selectivity in Oxygenate Coupling Reactions. Journal of the American Chemical Society
Tran HV, Doan HA, Chandler BD, et al. (2016) Water-assisted oxygen activation during selective oxidation reactions Current Opinion in Chemical Engineering. 13: 100-108
Baek B, Aboiralor A, Wang S, et al. (2016) Strategy to improve catalytic trend predictions for methane oxidation and reforming Aiche Journal
Liang Y, Yoo HD, Li Y, et al. (2015) Interlayer-expanded molybdenum disulfide nanocomposites for electrochemical magnesium storage. Nano Letters. 15: 2194-202
Ghorbanpour A, Gumidyala A, Grabow LC, et al. (2015) Epitaxial growth of ZSM-5@Silicalite-1: A core-shell zeolite designed with passivated surface acidity Acs Nano. 9: 4006-4016
Nelson RC, Baek B, Ruiz P, et al. (2015) Experimental and Theoretical Insights into the Hydrogen-Efficient Direct Hydrodeoxygenation Mechanism of Phenol over Ru/TiO2 Acs Catalysis. 5: 6509-6523
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