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JORGE R ESPINOSA (ORCID:0000-0001-9530-2658)
JORGE R ESPINOSA (ORCID:0000-0001-9530-2658)
Complutense University of Madrid / University of Cambridge
Bestätigte E-Mail-Adresse bei cam.ac.uk - Startseite
Titel
Zitiert von
Zitiert von
Jahr
Homogeneous ice nucleation at moderate supercooling from molecular simulation
E Sanz, C Vega, JR Espinosa, R Caballero-Bernal, JLF Abascal, ...
Journal of the American Chemical Society 135 (40), 15008-15017, 2013
3252013
Reentrant liquid condensate phase of proteins is stabilized by hydrophobic and non-ionic interactions
G Krainer, TJ Welsh, JA Joseph, JR Espinosa, S Wittmann, E de Csillery, ...
Nature Communications 12, 1-14, 2021
3172021
Seeding approach to crystal nucleation
JR Espinosa, C Vega, C Valeriani, E Sanz
The Journal of chemical physics 144 (3), 034501, 2016
2072016
Liquid network connectivity regulates the stability and composition of biomolecular condensates with many components
JR Espinosa, JA Joseph, I Sanchez-Burgos, A Garaizar, D Frenkel, ...
Proceedings of the National Academy of Sciences 117 (24), 13238-13247, 2020
1692020
Homogeneous ice nucleation evaluated for several water models
JR Espinosa, E Sanz, C Valeriani, C Vega
The Journal of chemical physics 141 (18), 18C529, 2014
1582014
Physics-driven coarse-grained model for biomolecular phase separation with near-quantitative accuracy
AJ Joseph, A Reinhardt, A Aguirre, PY Chew, KO Russell, JR Espinosa, ...
Nat. Comput. Sci, 2021
1462021
On fluid-solid direct coexistence simulations: The pseudo-hard sphere model
JR Espinosa, E Sanz, C Valeriani, C Vega
The Journal of chemical physics 139 (14), 144502, 2013
1062013
On the calculation of solubilities via direct coexistence simulations: Investigation of NaCl aqueous solutions and Lennard-Jones binary mixtures
JR Espinosa, JM Young, H Jiang, D Gupta, C Vega, E Sanz, ...
The Journal of chemical physics 145 (15), 154111, 2016
1032016
A potential model for sodium chloride solutions based on the TIP4P/2005 water model
AL Benavides, MA Portillo, VC Chamorro, JR Espinosa, JLF Abascal, ...
Journal of Chemical Physics 147 (104501), 2017
1002017
Ice–water interfacial free energy for the TIP4P, TIP4P/2005, tip4P/ice, and mW models as obtained from the mold integration technique
JR Espinosa, C Vega, E Sanz
The Journal of Physical Chemistry C 120 (15), 8068-8075, 2016
1002016
Surface Electrostatics Govern the Emulsion Stability of Biomolecular Condensates
TJ Welsh, G Krainer, JR Espinosa, JA Joseph, A Sridhar, M Jahnel, ...
Nano Letters, 2022
81*2022
On the time required to freeze water
JR Espinosa, C Navarro, E Sanz, C Valeriani, C Vega
The Journal of Chemical Physics 145 (21), 211922, 2016
802016
NaCl nucleation from brine in seeded simulations: Sources of uncertainty in rate estimates
N Zimmermann, B Vorselaars, JR Espinosa, D Quigley, WR Smith, E Sanz, ...
The Journal of chemical physics 148 (22), 2018
772018
Interfacial Free Energy as the Key to the Pressure-Induced Deceleration of Ice Nucleation
JR Espinosa, A Zaragoza, P Rosales-Pelaez, C Navarro, C Valeriani, ...
Physical review letters 117 (13), 135702, 2016
762016
The crystal-fluid interfacial free energy and nucleation rate of NaCl from different simulation methods
JR Espinosa, C Vega, C Valeriani, E Sanz
The Journal of chemical physics 142 (19), 194709, 2015
762015
Competition between ices Ih and Ic in homogeneous water freezing
A Zaragoza, MM Conde, JR Espinosa, C Valeriani, C Vega, E Sanz
The Journal of chemical physics 143 (13), 134504, 2015
722015
The mold integration method for the calculation of the crystal-fluid interfacial free energy from simulations
JR Espinosa, C Vega, E Sanz
The Journal of chemical physics 141 (13), 134709, 2014
712014
Thermodynamics and kinetics of phase separation of protein-RNA mixtures by a minimal model
JA Joseph, JR Espinosa, I Sanchez-Burgos, A Garaizar, D Frenkel, ...
Biophysical Journal 120 (7), 1219-1230, 2021
65*2021
Aging can transform single-component protein condensates into multiphase architectures
A Garaizar, JR Espinosa, JA Joseph, G Krainer, Y Shen, TPJ Knowles, ...
Proceedings of the National Academy of Sciences 119 (26), e2119800119, 2022
58*2022
Valency and Binding Affinity Variations Can Regulate the Multilayered Organization of Protein Condensates with Many Components
I Sanchez-Burgos, JR Espinosa, JA Joseph, R Collepardo-Guevara
Biomolecules 11 (2), 278, 2021
472021
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