Daan Frenkel, PhD
Affiliations: | Chemistry | University of Cambridge, Cambridge, England, United Kingdom |
Area:
soft condensed matter, simulation techniquesWebsite:
http://www.knaw.nl/nl/leden/leden/4122Google:
"Daan Frenkel"Bio:
http://www.ch.cam.ac.uk/person/df246
http://www-frenkel.ch.cam.ac.uk/people/daan.html
http://scholar.google.com/citations?user=_ZwalIwAAAAJ&hl=en
https://profs.library.uu.nl/index.php/profrec/getprofdata/620/35/129/0
D. Frenkel at the Album Academicum of the University of Amsterdam
Mean distance: 12.09 | S | N | B | C | P |
Cross-listing: Physics Tree - MathTree
Parents
Sign in to add mentorJan van der Elsken | grad student | 1972-1977 | Amsterdam | |
(Thesis: Rotational relaxation of linear molecules in dense noble gases) | ||||
John P. McTague | post-doc | 1977-1980 | UCLA |
Children
Sign in to add traineeBela M. Mulder | grad student | 1981-1986 | Utrecht (Physics Tree) |
Berend Smit | grad student | 1990 | Utrecht |
Evert Jan Meijer | grad student | 1993 | Utrecht |
Marjolein Dijkstra | grad student | 1994 | Utrecht |
Pieter G. Bolhuis | grad student | 1996 | Utrecht |
Chantal Valeriani | grad student | 2002-2007 | FOM Institute AMOLF (Physics Tree) |
Lizhe Zhu | grad student | 2007-2008 | Cambridge |
Yawei Liu | grad student | 2014-2016 | Cambridge (Physics Tree) |
Stefano Martiniani | grad student | 2012-2017 | Cambridge |
Rosana Collepardo-Guevara | post-doc | Cambridge | |
Ignacio Pagonabarraga | post-doc | 1996-1998 | (Physics Tree) |
Emmanuel Trizac | post-doc | 1997-1998 | FOM Institute AMOLF (Physics Tree) |
Jaydeb Chakrabarti | post-doc | 1999 | FOM Institute AMOLF (Physics Tree) |
Angelo Cacciuto | post-doc | 2002-2005 | FOM Institute AMOLF |
Patrick Charbonneau | post-doc | 2008 | FOM Institute AMOLF |
Robert Vacha | post-doc | 2009-2011 | Cambridge |
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Publications
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Joseph JA, Espinosa JR, Sanchez-Burgos I, et al. (2021) Thermodynamics and kinetics of phase separation of protein-RNA mixtures by a minimal model. Biophysical Journal |
Wang X, Ramírez-Hinestrosa S, Frenkel D. (2020) Using Molecular Simulation to Compute Transport Coefficients of Molecular Gases. The Journal of Physical Chemistry. B. 124: 7636-7646 |
Espinosa JR, Joseph JA, Sanchez-Burgos I, et al. (2020) Liquid network connectivity regulates the stability and composition of biomolecular condensates with many components. Proceedings of the National Academy of Sciences of the United States of America |
Eloul S, Poon WCK, Farago O, et al. (2020) Reactive Momentum Transfer Contributes to the Self-Propulsion of Janus Particles. Physical Review Letters. 124: 188001 |
Ramírez-Hinestrosa S, Yoshida H, Bocquet L, et al. (2020) Studying polymer diffusiophoresis with non-equilibrium molecular dynamics Journal of Chemical Physics. 152: 164901 |
Wei J, Ramírez-Hinestrosa S, Dobnikar J, et al. (2020) Effect of the interaction strength and anisotropy on the diffusio-phoresis of spherical colloids. Soft Matter |
Zu M, Bupathy A, Frenkel D, et al. (2020) Information density, structure and entropy in equilibrium and non-equilibrium systems Journal of Statistical Mechanics: Theory and Experiment. 2020: 23204 |
Espinosa JR, Vega C, Valeriani C, et al. (2019) Heterogeneous versus homogeneous crystal nucleation of hard spheres. Soft Matter |
Proesmans K, Frenkel D. (2019) Comparing theory and simulation for thermo-osmosis. The Journal of Chemical Physics. 151: 124109 |
Espinosa JR, Garaizar A, Vega C, et al. (2019) Breakdown of the law of rectilinear diameter and related surprises in the liquid-vapor coexistence in systems of patchy particles. The Journal of Chemical Physics. 150: 224510 |