Athanassios Z. Panagiotopoulos
Affiliations: | Chemical and Biological Engineering | Princeton University, Princeton, NJ |
Area:
theoretical and computer simulation techniques for the study of properties of fluids and materialsWebsite:
http://www.princeton.edu/cbe/people/faculty/panagiotopoulos/Google:
"Athanassios Z. Panagiotopoulos"Bio:
http://hdl.handle.net/1721.1/14883
http://www.princeton.edu/cbe/people/faculty/panagiotopoulos/group/
Mean distance: 9.02 | S | N | B | C | P |
Parents
Sign in to add mentorRobert C. Reid | grad student | 1986 | MIT | |
(High pressure phase equilibria : experimental and Monte Carlo simulation studies) | ||||
Ulrich W. Suter | grad student | 1986 | MIT |
Children
Sign in to add traineeKevin S. Silmore | research assistant | 2014-2016 | Princeton (Physics Tree) |
Kevin B. Daly | grad student | Princeton | |
Jeffrey R. Errington | grad student | 1999 | Cornell |
Jeffrey J. Potoff | grad student | 1999 | Cornell (E-Tree) |
Daniel W. Cheong | grad student | 2006 | Princeton |
Owen J. Hehmeyer | grad student | 2007 | Princeton |
Philip J. Lenart | grad student | 2007 | Princeton |
Marian E. Gindy | grad student | 2008 | Princeton |
Jonathan R. Davis | grad student | 2010 | Princeton |
Justin R. Spaeth | grad student | 2011 | Princeton |
Samantha A. Sanders | grad student | 2012 | Princeton |
Bingbing Hong | grad student | 2013 | Princeton |
Othonas A. Moultos | post-doc | 2014-2016 | (Neurotree) |
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Publications
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Piaggi PM, Selloni A, Panagiotopoulos AZ, et al. (2023) A first-principles machine-learning force field for heterogeneous ice nucleation on microcline feldspar. Faraday Discussions |
Panagiotopoulos AZ. (2023) Phase separation and aggregation in multiblock chains. The Journal of Chemical Physics. 158 |
Gartner TE, Piaggi PM, Car R, et al. (2023) Liquid-Liquid Transition in Water from First Principles. Physical Review Letters. 129: 255702 |
Piaggi PM, Weis J, Panagiotopoulos AZ, et al. (2022) Homogeneous ice nucleation in an ab initio machine-learning model of water. Proceedings of the National Academy of Sciences of the United States of America. 119: e2207294119 |
Weis J, Sciortino F, Panagiotopoulos AZ, et al. (2022) Liquid-liquid criticality in the WAIL water model. The Journal of Chemical Physics. 157: 024502 |
Gartner TE, Hunter KM, Lambros E, et al. (2022) Anomalies and Local Structure of Liquid Water from Boiling to the Supercooled Regime as Predicted by the Many-Body MB-pol Model. The Journal of Physical Chemistry Letters. 13: 3652-3658 |
Saravi SH, Panagiotopoulos AZ. (2022) Activity Coefficients and Solubilities of NaCl in Water-Methanol Solutions from Molecular Dynamics Simulations. The Journal of Physical Chemistry. B |
Saravi SH, Panagiotopoulos AZ. (2021) Activity coefficients of aqueous electrolytes from implicit-water molecular dynamics simulations. The Journal of Chemical Physics. 155: 184501 |
Muniz MC, Gartner TE, Riera M, et al. (2021) Vapor-liquid equilibrium of water with the MB-pol many-body potential. The Journal of Chemical Physics. 154: 211103 |
Piaggi PM, Panagiotopoulos AZ, Debenedetti PG, et al. (2021) Phase Equilibrium of Water with Hexagonal and Cubic Ice Using the SCAN Functional. Journal of Chemical Theory and Computation |