Alexie M. Kolpak, Ph.D.

Affiliations: 
2007 University of Pennsylvania, Philadelphia, PA, United States 
Area:
theoretical and computational approaches to study complex systems in materials science, condensed-matter physics, and physical chemistry
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"Alexie Kolpak"
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Parents

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Andrew M. Rappe grad student 2007 Penn
 (Ab initio studies of the chemistry at ferroelectric surfaces and interfaces.)
Sohrab Ismail-Beigi post-doc 2007-2010 Yale (Physics Tree)
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Publications

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May KJ, Kolpak AM. (2020) Improved description of perovskite oxide crystal structure and electronic properties using self-consistent Hubbard U corrections from ACBN0 Physical Review B. 101
Park K, Kolpak AM. (2019) Photocatalytic hydrogen evolution activity of Co/CoO hybrid structures: a first-principles study on the Co layer thickness effect Journal of Materials Chemistry A. 7: 16176-16189
Garg A, Gonçalves DS, Liu Y, et al. (2019) Impact of Transition Metal Carbide and Nitride Supports on the Electronic Structure of Thin Platinum Overlayers Acs Catalysis. 9: 7090-7098
Forslund RP, Hardin WG, Rong X, et al. (2018) Exceptional electrocatalytic oxygen evolution via tunable charge transfer interactions in LaSrNiFeO Ruddlesden-Popper oxides. Nature Communications. 9: 3150
Yoo JS, Liu Y, Rong X, et al. (2018) Electronic Origin and Kinetic Feasibility of the Lattice Oxygen Participation During the Oxygen Evolution Reaction on Perovskites. The Journal of Physical Chemistry Letters
Yoo JS, Rong X, Liu Y, et al. (2018) Role of Lattice Oxygen Participation in Understanding Trends in the Oxygen Evolution Reaction on Perovskites Acs Catalysis. 8: 4628-4636
Park K, Kolpak AM. (2018) Understanding photocatalytic overall water splitting on CoO nanoparticles: Effects of facets, surface stoichiometry, and the CoO/water interface Journal of Catalysis. 365: 115-124
Dogan M, Fernandez-Pena S, Kornblum L, et al. (2017) Single atomic layer ferroelectric on silicon. Nano Letters
Lentz LC, Kolpak AM. (2017) First-principles design of nanostructured hybrid photovoltaics based on layered transition metal phosphates. Scientific Reports. 7: 1248
Kim Y, Cruz SS, Lee K, et al. (2017) Remote epitaxy through graphene enables two-dimensional material-based layer transfer. Nature. 544: 340-343
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