Timothy P. Holme, Ph.D.
Affiliations: | 2009 | Stanford University, Palo Alto, CA |
Area:
energy conversion and storage at the nanoscaleGoogle:
"Timothy Holme"Mean distance: 18.58
Parents
Sign in to add mentorFritz (Friedrich) Prinz | grad student | 2009 | Stanford | |
(Energy storage and conversion in the platinum|zirconia system: From first-principles to prototypes.) |
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Publications
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Pylypenko S, Borisevich A, More KL, et al. (2013) Nitrogen: Unraveling the secret to stable carbon-supported Pt-alloy electrocatalysts Energy and Environmental Science. 6: 2957-2964 |
Shim JH, Park JS, Holme TP, et al. (2012) Enhanced oxygen exchange and incorporation at surface grain boundaries on an oxide ion conductor Acta Materialia. 60: 1-7 |
Holme TP, Prinz FB. (2011) Nonprecious metal catalysts for low temperature solid oxide fuel cells Journal of Physical Chemistry C. 115: 11641-11648 |
Kim YB, Holme TP, Gür TM, et al. (2011) Surface-modified low-temperature solid oxide fuel cell Advanced Functional Materials. 21: 4684-4690 |
Pylypenko S, Wood K, Queen A, et al. (2011) Improving catalyst-support interactions: From model systems to high-performing direct methanol fuel cell catalysts Acs National Meeting Book of Abstracts |
Holme T, Zhou Y, Pasquarelli R, et al. (2010) First principles study of doped carbon supports for enhanced platinum catalysts. Physical Chemistry Chemical Physics : Pccp. 12: 9461-8 |
Holme T, Prinz FB. (2010) First Principles Study of Oxygen Incorporation Reactions in Oxides Transactions of the Materials Research Society of Japan. 35: 59-68 |
Holme TP, Pornprasertsuk R, Prinz FB. (2010) Interpretation of low temperature solid oxide fuel cell electrochemical impedance spectra Journal of the Electrochemical Society. 157: B64-B70 |
Huang H, Holme T, Prinz FB. (2010) Increased cathodic kinetics on platinum in IT-SOFCs by inserting highly ionic-conducting nanocrystalline materials Journal of Fuel Cell Science and Technology. 7: 0410121-0410125 |
Zhou Y, Holme T, Berry J, et al. (2010) Dopant-induced electronic structure modification of HOPG surfaces: Implications for high activity fuel cell catalysts Journal of Physical Chemistry C. 114: 506-515 |