Nima Nikbin, D.Eng.
Affiliations: | 2014 | Department of Chemical Engineering | University of Delaware, Newark, DE, United States |
Area:
Chemical Engineering, Organic ChemistryGoogle:
"Nima Nikbin"Mean distance: (not calculated yet)
Parents
Sign in to add mentorDionisios Vlachos | grad student | 2014 | University of Delaware | |
(First-principles-based kinetic modeling of the zeolite-catalyzed conversion of furans to aromatics.) |
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Publications
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Williams CL, Vinter KP, Patet RE, et al. (2016) Inhibition of Xylene Isomerization in the Production of Renewable Aromatic Chemicals from Biomass-Derived Furans Acs Catalysis. 6: 2076-2088 |
Green SK, Patet RE, Nikbin N, et al. (2016) Diels-Alder cycloaddition of 2-methylfuran and ethylene for renewable toluene Applied Catalysis B: Environmental. 180: 487-496 |
Nikbin N, Austin N, Vlachos DG, et al. (2015) Catalysis at the sub-nanoscale: Complex CO oxidation chemistry on a few Au atoms Catalysis Science and Technology. 5: 134-141 |
Patet RE, Nikbin N, Williams CL, et al. (2015) Kinetic Regime Change in the Tandem Dehydrative Aromatization of Furan Diels-Alder Products Acs Catalysis. 5: 2367-2375 |
Nikbin N, Feng S, Caratzoulas S, et al. (2014) p-Xylene Formation by Dehydrative Aromatization of a Diels–Alder Product in Lewis and Brønsted Acidic Zeolites The Journal of Physical Chemistry C. 118: 24415-24424 |
Nikbin N, Caratzoulas S, Vlachos DG. (2014) On the oligomerization mechanism of Brønsted acid-catalyzed conversion of furans to diesel-range fuels Applied Catalysis a: General. 485: 118-122 |
Nikbin N, Caratzoulas S, Vlachos DG. (2013) On the Brønsted acid-catalyzed homogeneous hydrolysis of furans. Chemsuschem. 6: 2066-8 |
Nikbin N, Do PT, Caratzoulas S, et al. (2013) A DFT study of the acid-catalyzed conversion of 2,5-dimethylfuran and ethylene to p-xylene Journal of Catalysis. 297: 35-43 |
Williams CL, Chang CC, Do P, et al. (2012) Cycloaddition of biomass-derived furans for catalytic production of renewable p -xylene Acs Catalysis. 2: 935-939 |
Nikbin N, Caratzoulas S, Vlachos DG. (2012) A First Principles-Based Microkinetic Model for the Conversion of Fructose to 5-Hydroxymethylfurfural Chemcatchem. 4: 504-511 |