Full molecular dynamics was used to simulate separately the diffusion of naked protons and H₃O⁺ hydrated protons across sulfonated poly(phenyl sulfone)s. Simulations were carried out for wet membranes with the following characteristics: ion-exchange capacity, 1.8 mequiv/g of dry membrane; water uptake, 10−30%; temperature range, 300−360 K. The diffusion coefficient of naked protons is nearly 1 order of magnitude higher than that of the hydrated protons for the membranes with the lower water uptake (10%). For the membranes with higher water uptake the ratio between the diffusion coefficients of the two particles reduces to about half an order of magnitude. The conductivity of the naked protons increases from 21.4 × 10⁻³ to 52.5 × 10⁻³ S/cm ...
We have performed a detailed analysis of water clustering and percolation in hydrated Nafion configu...
Proton conducting polymer electrolyte membranes (PEM) for fuel cell applications often contain a sul...
The proton conductivity of polymer electrolyte membranes (PEMs) plays a crucial role for the perform...
Full molecular dynamics was used to simulate separately the diffusion of naked protons and H₃O⁺ hydr...
Full Molecular Dynamics was used to simulate separately the diffusion of naked protons and H₃O⁺ hydr...
This work describes proton transport in membranes cast from dimethyl sulfoxide solutions of polyelec...
The effect of relative humidity (RH) and degree of sulfonation (DS) on the ionic conductivity and wa...
Multiple computational and experimental techniques are used to understand the nanoscale morphology a...
Classical molecular dynamics (MD) simulations were performed to determine the hydrated morphology an...
AbstractThe structural and dynamical properties of a hydrated proton near the surface of DMPC membra...
Perfluoroimide acid (PFIA) belongs to a new class of Multi Acid Side Chain (MASC) polyelectrolyte me...
Proton exchange membrane (PEM) fuel cells are an eco-friendly power source that has great potential ...
We report the results of ab initio molecular dynamics simulations of a model Nafion polymer membrane...
The enhancement of proton transport in polymer electrolyte membranes is an important issue for the d...
Proton conducting media are important materials to facilitate further the progress of efficient ener...
We have performed a detailed analysis of water clustering and percolation in hydrated Nafion configu...
Proton conducting polymer electrolyte membranes (PEM) for fuel cell applications often contain a sul...
The proton conductivity of polymer electrolyte membranes (PEMs) plays a crucial role for the perform...
Full molecular dynamics was used to simulate separately the diffusion of naked protons and H₃O⁺ hydr...
Full Molecular Dynamics was used to simulate separately the diffusion of naked protons and H₃O⁺ hydr...
This work describes proton transport in membranes cast from dimethyl sulfoxide solutions of polyelec...
The effect of relative humidity (RH) and degree of sulfonation (DS) on the ionic conductivity and wa...
Multiple computational and experimental techniques are used to understand the nanoscale morphology a...
Classical molecular dynamics (MD) simulations were performed to determine the hydrated morphology an...
AbstractThe structural and dynamical properties of a hydrated proton near the surface of DMPC membra...
Perfluoroimide acid (PFIA) belongs to a new class of Multi Acid Side Chain (MASC) polyelectrolyte me...
Proton exchange membrane (PEM) fuel cells are an eco-friendly power source that has great potential ...
We report the results of ab initio molecular dynamics simulations of a model Nafion polymer membrane...
The enhancement of proton transport in polymer electrolyte membranes is an important issue for the d...
Proton conducting media are important materials to facilitate further the progress of efficient ener...
We have performed a detailed analysis of water clustering and percolation in hydrated Nafion configu...
Proton conducting polymer electrolyte membranes (PEM) for fuel cell applications often contain a sul...
The proton conductivity of polymer electrolyte membranes (PEMs) plays a crucial role for the perform...