Nanoporous graphene (NPG) shows tremendous promise as an ultra-permeable membrane for water desalination thanks to its atomic thickness and precise sieving properties. However, a significant gap exists in the literature between the ideal conditions assumed for NPG desalination and the physical environment inherent to reverse osmosis (RO) systems. In particular, the water permeability of NPG has been calculated previously based on very high pressures (1000–2000 bars). Does NPG maintain its ultrahigh water permeability under real-world RO pressures (<100 bars)? Here, we answer this question by drawing results from molecular dynamics simulations. Our results indicate that NPG maintains its ultrahigh permeability even at low pressures, allowing...
Molecular dynamics simulations were employed to study the transport of water and ions through pores ...
Membrane separation applications such as water desalination and carbon capture require high permeanc...
Water as a basic necessity is an influential factor in our everyday lives but water pollution, urban...
ABSTRACT: Recent advances in the development of nano-porous graphene (NPG) hold promise for the futu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Graphyne sheet exhibits promising potential for nanoscale desalination to achieve both high water pe...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Nanoporous graphene/graphene oxide (NPGs/NPGOs) has been widely used in desalination because of thei...
Nanoporous carbon materials are extensively studied for various separation applications. Among them,...
Nanoporous carbon materials are extensively studied for various separation applications. Among them,...
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...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
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 ...
Membrane separation applications such as water desalination and carbon capture require high permeanc...
Water as a basic necessity is an influential factor in our everyday lives but water pollution, urban...
ABSTRACT: Recent advances in the development of nano-porous graphene (NPG) hold promise for the futu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Graphyne sheet exhibits promising potential for nanoscale desalination to achieve both high water pe...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Nanoporous graphene/graphene oxide (NPGs/NPGOs) has been widely used in desalination because of thei...
Nanoporous carbon materials are extensively studied for various separation applications. Among them,...
Nanoporous carbon materials are extensively studied for various separation applications. Among them,...
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...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
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 ...
Membrane separation applications such as water desalination and carbon capture require high permeanc...
Water as a basic necessity is an influential factor in our everyday lives but water pollution, urban...