The interactions of water with solid surfaces govern their apparent hydrophobicity/hydrophilicity, influenced at the molecular scale by surface coverage of chemical groups of varied nonpolar/polar character. Recently, it has become clear that the precise patterning of surface groups, and not simply average surface coverage, has a significant impact on the structure and thermodynamics of hydration layer water, and, in turn, on macroscopic interfacial properties. Here we show that patterning also controls the dynamics of hydration water, a behavior frequently thought to be leveraged by biomolecules to influence functional dynamics, but yet to be generalized. To uncover the role of surface heterogeneities, we couple a genetic algorithm to iter...
The interactions of a hydrophilic surface with water can significantly influence the characteristics...
We performed classical molecular dynamics simulations using both fixed-charge and polarizable water ...
The interface between water and folded proteins is very complex. Proteins have "patchy" solvent-acce...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Hydration water on the surface of a protein is thought to mediate the thermodynamics of protein–liga...
In this work, we present a general computational method for characterizing the molecular structure o...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
The upsurge of interest in the nature of water adjacent to hydrophobic liquids is due in part to the...
Water near hydrophobic surfaces is like that at a liquid-vapor interface, where fluc-tuations in wat...
Water present in confining geometries plays key roles in many systems of scientific and technologica...
We have applied molecular dynamics and methods of importance sampling to study structure and dynamic...
The hydrophobic effect drives the folding of proteins into their native states within cells by maxim...
The interactions of a hydrophilic surface with water can significantly influence the characteristics...
We performed classical molecular dynamics simulations using both fixed-charge and polarizable water ...
The interface between water and folded proteins is very complex. Proteins have "patchy" solvent-acce...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Hydration water on the surface of a protein is thought to mediate the thermodynamics of protein–liga...
In this work, we present a general computational method for characterizing the molecular structure o...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
The upsurge of interest in the nature of water adjacent to hydrophobic liquids is due in part to the...
Water near hydrophobic surfaces is like that at a liquid-vapor interface, where fluc-tuations in wat...
Water present in confining geometries plays key roles in many systems of scientific and technologica...
We have applied molecular dynamics and methods of importance sampling to study structure and dynamic...
The hydrophobic effect drives the folding of proteins into their native states within cells by maxim...
The interactions of a hydrophilic surface with water can significantly influence the characteristics...
We performed classical molecular dynamics simulations using both fixed-charge and polarizable water ...
The interface between water and folded proteins is very complex. Proteins have "patchy" solvent-acce...