David Hibbitts

Affiliations: 
University of Florida, Gainesville, Gainesville, FL, United States 
Area:
Heterogeneous Catalysis
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"David Hibbitts"
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Publications

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Hoffman AJ, Bates JS, Di Iorio JR, et al. (2020) Rigid Arrangements of Ionic Charge in Zeolite Frameworks Conferred by Specific Al Distributions Preferentially Stabilize Alkanol Dehydration Transition States. Angewandte Chemie (International Ed. in English)
Allen MC, Hoffman AJ, Liu T, et al. (2020) Highly Selective Cross-Etherification of 5-Hydroxymethylfurfural with Ethanol Acs Catalysis. 10: 6771-6785
Almithn AS, Hibbitts DD. (2020) Impact of Metal and Heteroatom Identities in the Hydrogenolysis of C–X Bonds (X = C, N, O, S, and Cl) Acs Catalysis. 10: 5086-5100
Witzke ME, Almithn AS, Coonrod CL, et al. (2019) In situ Methods for Identifying Reactive Surface Intermediates during Hydrogenolysis Reactions: C-O Bond Cleavage on Nanoparticles of Nickel and Nickel Phosphides. Journal of the American Chemical Society
DeLuca M, Kravchenko P, Hoffman A, et al. (2019) Mechanism and Kinetics of Methylating C6–C12 Methylbenzenes with Methanol and Dimethyl Ether in H-MFI Zeolites Acs Catalysis. 9: 6444-6460
Hoffman A, DeLuca M, Hibbitts D. (2019) Restructuring of MFI Framework Zeolite Models and Their Associated Artifacts in Density Functional Theory Calculations The Journal of Physical Chemistry C. 123: 6572-6585
Almithn A, Hibbitts D. (2019) Comparing Rate and Mechanism of Ethane Hydrogenolysis on Transition-Metal Catalysts The Journal of Physical Chemistry C. 123: 5421-5432
García-Diéguez M, Hibbitts DD, Iglesia E. (2019) Hydrogen Chemisorption Isotherms on Platinum Particles at Catalytic Temperatures: Langmuir and Two-Dimensional Gas Models Revisited The Journal of Physical Chemistry C. 123: 8447-8462
Di Iorio JR, Hoffman AJ, Nimlos CT, et al. (2019) Mechanistic origins of the high-pressure inhibition of methanol dehydration rates in small-pore acidic zeolites Journal of Catalysis. 380: 161-177
Cordon MJ, Harris JW, Vega-Vila JC, et al. (2018) The Dominant Role of Entropy in Stabilizing Sugar Isomerization Transition States within Hydrophobic Zeolite Pores. Journal of the American Chemical Society
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