Atomistic and first-principles molecular dynamics simulations are employed to investigate the structure formation in a hydrated Nafion membrane and the solvation and transport of protons in the water channel of the membrane. For the water/Nafion systems containing more than 4 million atoms, it is found that the observed microphase-segregated morphology can be classified as bicontinuous: both majority (hydrophobic) and minority (hydrophilic) subphases are 3D continuous and organized in an irregular ordered pattern, which is largely similar to that known for a bicontinuous double-diamond structure. The characteristic size of the connected hydrophilic channels is about 25–50 Å, depending on the water content. A thermodynamic decomposition of t...
Nafion (Fig. 1) is a macromolecule with hydropho-bic CF2 backbone and hydrophilic side chains, each ...
Molecular dynamics computer simulations of water/Nafion mixtures using an all-atom model were perfor...
Large-scale atomistic and quantum-mechanical simulations of a Nafion membrane: Morphology, proton so...
A molecular dynamics simulation study of hydrated Nafion at water contents ranging from 5 to 20 wt %...
[[abstract]]An investigation of the proton dynamics inside a Nafion membrane has been carried out by...
We present the results of the atomistic molecular dynamics modeling of different protonation states ...
\u3cp\u3eWe present the results of the atomistic molecular dynamics modeling of different protonatio...
We have performed a detailed analysis of water clustering and percolation in hydrated Nafion configu...
peer reviewedWe have performed a detailed analysis of water clustering and percolation in hydrated N...
In this work, using molecular dynamics simulations, we examine the effect of atomic charge delocaliz...
In this work, using molecular dynamics simulations, we examine the effect of atomic charge delocaliz...
In this work, using molecular dynamics simulations, we examine the effect of atomic charge delocaliz...
We present the results of the atomistic molecular dynamics modeling of different protonation states ...
We present the results of the atomistic molecular dynamics modeling of different protonation states ...
In this work, using molecular dynamics simulations, we examine the effect of atomic charge delocaliz...
Nafion (Fig. 1) is a macromolecule with hydropho-bic CF2 backbone and hydrophilic side chains, each ...
Molecular dynamics computer simulations of water/Nafion mixtures using an all-atom model were perfor...
Large-scale atomistic and quantum-mechanical simulations of a Nafion membrane: Morphology, proton so...
A molecular dynamics simulation study of hydrated Nafion at water contents ranging from 5 to 20 wt %...
[[abstract]]An investigation of the proton dynamics inside a Nafion membrane has been carried out by...
We present the results of the atomistic molecular dynamics modeling of different protonation states ...
\u3cp\u3eWe present the results of the atomistic molecular dynamics modeling of different protonatio...
We have performed a detailed analysis of water clustering and percolation in hydrated Nafion configu...
peer reviewedWe have performed a detailed analysis of water clustering and percolation in hydrated N...
In this work, using molecular dynamics simulations, we examine the effect of atomic charge delocaliz...
In this work, using molecular dynamics simulations, we examine the effect of atomic charge delocaliz...
In this work, using molecular dynamics simulations, we examine the effect of atomic charge delocaliz...
We present the results of the atomistic molecular dynamics modeling of different protonation states ...
We present the results of the atomistic molecular dynamics modeling of different protonation states ...
In this work, using molecular dynamics simulations, we examine the effect of atomic charge delocaliz...
Nafion (Fig. 1) is a macromolecule with hydropho-bic CF2 backbone and hydrophilic side chains, each ...
Molecular dynamics computer simulations of water/Nafion mixtures using an all-atom model were perfor...
Large-scale atomistic and quantum-mechanical simulations of a Nafion membrane: Morphology, proton so...