Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanoporous membranes for reverse osmosis applications. In such simulations, water models play an important role in accurately reproducing the properties of water. We investigated the water and ion transport across a hydroxyl (OH) functionalized graphene nanopore using six water models: SPC, SPC/E, SPC/Fw, TIP3P, TIP4P, and TIP4P/2005. The water flux thus obtained varied up to 84% between the models. The water and ion flux showed a correlation with the bulk transport properties of the models such as the diffusion coefficient and shear viscosity. We found that the hydrogen-bond lifetime, resulting from the partial charges of the model, influenced th...
Click on the DOI link to access the article (may not be free).Fundamental understanding of the water...
<p>In this paper, one nanoporous graphene grafting several zwitterionic polymer chains was designed ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
Nanoporous carbon materials are extensively studied for various separation applications. Among them,...
Nanoporous carbon materials are extensively studied for various separation applications. Among them,...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
Molecular dynamics simulations were employed to study the transport of water and ions through pores ...
The water transport through nanoporous multilayered graphene at 300k is investigated using molecular...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
Graphene oxide membranes have been widely studied for their potential applications in water desalina...
We report a molecular dynamics (MD) simulation study of reverse osmosis desalination using nanoporou...
Nanoporous graphene (NPG) shows tremendous promise as an ultra-permeable membrane for water desalina...
Click on the DOI link to access the article (may not be free).Fundamental understanding of the water...
<p>In this paper, one nanoporous graphene grafting several zwitterionic polymer chains was designed ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
Nanoporous carbon materials are extensively studied for various separation applications. Among them,...
Nanoporous carbon materials are extensively studied for various separation applications. Among them,...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
Molecular dynamics simulations were employed to study the transport of water and ions through pores ...
The water transport through nanoporous multilayered graphene at 300k is investigated using molecular...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
Graphene oxide membranes have been widely studied for their potential applications in water desalina...
We report a molecular dynamics (MD) simulation study of reverse osmosis desalination using nanoporou...
Nanoporous graphene (NPG) shows tremendous promise as an ultra-permeable membrane for water desalina...
Click on the DOI link to access the article (may not be free).Fundamental understanding of the water...
<p>In this paper, one nanoporous graphene grafting several zwitterionic polymer chains was designed ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...