AbstractThe structural and dynamical properties of a hydrated proton near the surface of DMPC membrane were studied using a molecular dynamics simulation. The proton transport between water molecules was modeled using the second generation multistate empirical valence bond model. The proton diffusion was found to be inhibited at the membrane surface. The potential of mean force for the proton adsorption to the membrane surface and its release back into the bulk water was also determined, yielding a small barrier in each direction. An efficient algorithm for Ewald summation calculations for the multistate empirical valence bond model is also introduced
Proton transport at water/membrane interfaces plays a fundamental role for a myriad of bioenergetic ...
The cellular energy machinery depends on the presence and properties of protons at or in the vicinit...
Proton exchange membrane (PEM) fuel cells are an eco-friendly power source that has great potential ...
AbstractThe structural and dynamical properties of a hydrated proton near the surface of DMPC membra...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
Proton transport at water/membrane interfaces plays a fundamental role for a myriad of bioenergetic ...
Proton transport at water/membrane interfaces plays a fundamental role for a myriad of bioenergetic ...
The cellular energy machinery depends on the presence and properties of protons at or in the vicinit...
Proton exchange membrane (PEM) fuel cells are an eco-friendly power source that has great potential ...
AbstractThe structural and dynamical properties of a hydrated proton near the surface of DMPC membra...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
Proton transport at water/membrane interfaces plays a fundamental role for a myriad of bioenergetic ...
Proton transport at water/membrane interfaces plays a fundamental role for a myriad of bioenergetic ...
The cellular energy machinery depends on the presence and properties of protons at or in the vicinit...
Proton exchange membrane (PEM) fuel cells are an eco-friendly power source that has great potential ...