Dean R. Wheeler, Ph.D.

Affiliations: 
1998-2002 Chemical Engineering University of California, Berkeley, Berkeley, CA, United States 
 2003- Chemical Engineering Brigham Young University, Provo, UT, United States 
Area:
electrochemical energy conversion and storage
Website:
http://www.et.byu.edu/~wheeler/
Google:
"Dean Wheeler"
Mean distance: 3675.05
 

Parents

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John Newman grad student 1998-2002 UC Berkeley
 (Molecular simulations of diffusion in electrolytes.)

Children

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Clint Guymon grad student 2006 BYU
Abhishek Asthana grad student 2012 BYU
Dane C. Hansen grad student 2012 BYU
Stan G. Moore grad student 2012 BYU
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Publications

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Vogel JE, Forouzan MM, Hardy EE, et al. (2019) Electrode microstructure controls localized electronic impedance in Li-ion batteries Electrochimica Acta. 297: 820-825
Forouzan MM, Mazzeo BA, Wheeler DR. (2018) Modeling the Effects of Electrode Microstructural Heterogeneities on Li-Ion Battery Performance and Lifetime Journal of the Electrochemical Society. 165: A2127-A2144
Pouraghajan F, Knight H, Wray M, et al. (2018) Quantifying Tortuosity of Porous Li-Ion Battery Electrodes: Comparing Polarization-Interrupt and Blocking-Electrolyte Methods Journal of the Electrochemical Society. 165: A2644-A2653
Nevers DR, Brushett FR, Wheeler DR. (2017) Engineering radical polymer electrodes for electrochemical energy storage Journal of Power Sources. 352: 226-244
Forouzan MM, Chao CW, Bustamante D, et al. (2016) Experiment and simulation of the fabrication process of lithium-ion battery cathodes for determining microstructure and mechanical properties Journal of Power Sources. 312: 172-183
Monroe CW, Wheeler DR, Newman J. (2015) Nonequilibrium linear response theory: Application to Onsager-Stefan-Maxwell diffusion Industrial and Engineering Chemistry Research. 54: 4460-4467
Nichols JW, Wheeler DR. (2015) Fourier Correlation Method for Simulating Mutual Diffusion Coefficients in Condensed Systems at Equilibrium Industrial and Engineering Chemistry Research. 54: 12156-12164
Vierrath S, Zielke L, Moroni R, et al. (2015) Morphology of nanoporous carbon-binder domains in Li-ion batteries - A FIB-SEM study Electrochemistry Communications. 60: 176-179
Zielke L, Hutzenlaub T, Wheeler DR, et al. (2014) Electrodes: A Combination of X-Ray Tomography and Carbon Binder Modeling: Reconstructing the Three Phases of LiCoO2 Li-Ion Battery Cathodes (Adv. Energy Mater. 8/2014) Advanced Energy Materials. 4
Zielke L, Hutzenlaub T, Wheeler DR, et al. (2014) A combination of X-ray tomography and carbon binder modeling: Reconstructing the three phases of LiCoO2 Li-ion battery cathodes Advanced Energy Materials. 4
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