Metal ions underpin countless processes at bio-interfaces, including maintaining electroneutrality, modifying mechanical properties and driving bioenergetic activity. These processes are typically described by ions behaving as independently diffusing point charges. Here we show that Na+ and K+ ions instead spontaneously form correlated nanoscale networks that evolve over seconds at the interface with an anionic bilayer in solution. Combining single-ion level atomic force microscopy and molecular dynamic simulations we investigate the configuration and dynamics of Na+, K+, and Rb+ at the lipid surface. We identify two distinct ionic states: the well-known direct electrostatic interaction with lipid headgroups and a water-mediated interaction...
When immersed into water, most solids develop a surface charge, which is neutralized by an accumula...
Salts and proteins comprise two of the basic molecular components of biological materials. Kosmotrop...
The interplay between nucleic acids and lipids underpins several key processes in molecular biology,...
The organisation and kinetics of charges at solid and soft interfaces play a central role in biologi...
At the nanoscale level biological membranes present a complex interface with the solvent. The functi...
Most plasma membranes comprise a large number of different molecules including lipids and proteins. ...
The behaviour of ionic solutions confined in nanoscale gaps is central to countless processes, from ...
AbstractHow do metal cations affect the stability and structure of phospholipid bilayers? What role ...
The behaviour of ions at solid–liquid interfaces underpins countless phenomena, from the conduction ...
The nanoscale organization and dynamics of lipid molecules in self-assembled membranes is central to...
: The control of the aggregation of biomedical nanoparticles (NP) in physiological conditions is cru...
AbstractContinuum electrostatics models for ions in water provide apparent long range electrostatic ...
A unique, but unifying, feature of ionic liquids (ILs) is that they are nanostructured on the length...
AbstractThe association between monovalent salts and neutral lipid bilayers is known to influence gl...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
When immersed into water, most solids develop a surface charge, which is neutralized by an accumula...
Salts and proteins comprise two of the basic molecular components of biological materials. Kosmotrop...
The interplay between nucleic acids and lipids underpins several key processes in molecular biology,...
The organisation and kinetics of charges at solid and soft interfaces play a central role in biologi...
At the nanoscale level biological membranes present a complex interface with the solvent. The functi...
Most plasma membranes comprise a large number of different molecules including lipids and proteins. ...
The behaviour of ionic solutions confined in nanoscale gaps is central to countless processes, from ...
AbstractHow do metal cations affect the stability and structure of phospholipid bilayers? What role ...
The behaviour of ions at solid–liquid interfaces underpins countless phenomena, from the conduction ...
The nanoscale organization and dynamics of lipid molecules in self-assembled membranes is central to...
: The control of the aggregation of biomedical nanoparticles (NP) in physiological conditions is cru...
AbstractContinuum electrostatics models for ions in water provide apparent long range electrostatic ...
A unique, but unifying, feature of ionic liquids (ILs) is that they are nanostructured on the length...
AbstractThe association between monovalent salts and neutral lipid bilayers is known to influence gl...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
When immersed into water, most solids develop a surface charge, which is neutralized by an accumula...
Salts and proteins comprise two of the basic molecular components of biological materials. Kosmotrop...
The interplay between nucleic acids and lipids underpins several key processes in molecular biology,...