We demonstrate molybdenum disulfide (MoS2) as a nano porous membrane for water desalination. By performing extensive molecular dynamics simulations, we find that a nanopore in a single-layer MoS2 can effectively reject salt ions and allow transport of water at a high rate. More than 88% of ions are rejected by membranes having pore areas ranging from 20 to 60 A^2. Water flux through the nanoporous MoS2 membrane is found to be 2 to 5 orders of magnitude greater than that of other known nanoporous membranes (MFI-type zeolite, commercial polymeric seawater Reverse Osmosis (RO), brackish RO, Nanofiltration and High-flux RO). Pore chemistry and architecture are shown to play a significant role in modulating the water flux. MoS2 pores with only m...
The possibility of employing a zeolite nano-membrane for seawater desalination is studied using comp...
Affordable clean water is both a global and a national security issue as lack of it can cause death,...
Among the different developed solid-state nanopores, nanopores constructed in a monolayer of molybde...
Abstract: Molybdenum disulfide (MoS2), a two-dimensional (2D) material, promises better desalination...
One of the most promising applications in nanoscience is the design of new materials to improve wate...
Two-dimensional membranes have gained enormous interest due to their potential to deliver precision ...
Using molecular dynamic simulations, we show that single-layers of molybdenum disulfide (MoS2) and g...
Water scarcity is one of the most significant challenges of our time, and scenarios predicted by lea...
Abstract: Climate change and its related effects are imposing severe stress on the current freshwate...
Laminar membranes of two-dimensional materials are excellent candidates for applications in water fi...
Bimetallic MOFs, which contain two different types of metal nodes within their porous structures, ha...
uj:44706Abstract: Climate change and its resulting consequences, such as changes in the natural syst...
We study the impact of the induced pressure fields on the water flow and salt rejection in nanopores...
In this thesis, the potential applications of typical nanoporous material (including Graphene Oxide ...
Reverse osmosis constitutes a large portion of currently operating commercial water desalination sys...
The possibility of employing a zeolite nano-membrane for seawater desalination is studied using comp...
Affordable clean water is both a global and a national security issue as lack of it can cause death,...
Among the different developed solid-state nanopores, nanopores constructed in a monolayer of molybde...
Abstract: Molybdenum disulfide (MoS2), a two-dimensional (2D) material, promises better desalination...
One of the most promising applications in nanoscience is the design of new materials to improve wate...
Two-dimensional membranes have gained enormous interest due to their potential to deliver precision ...
Using molecular dynamic simulations, we show that single-layers of molybdenum disulfide (MoS2) and g...
Water scarcity is one of the most significant challenges of our time, and scenarios predicted by lea...
Abstract: Climate change and its related effects are imposing severe stress on the current freshwate...
Laminar membranes of two-dimensional materials are excellent candidates for applications in water fi...
Bimetallic MOFs, which contain two different types of metal nodes within their porous structures, ha...
uj:44706Abstract: Climate change and its resulting consequences, such as changes in the natural syst...
We study the impact of the induced pressure fields on the water flow and salt rejection in nanopores...
In this thesis, the potential applications of typical nanoporous material (including Graphene Oxide ...
Reverse osmosis constitutes a large portion of currently operating commercial water desalination sys...
The possibility of employing a zeolite nano-membrane for seawater desalination is studied using comp...
Affordable clean water is both a global and a national security issue as lack of it can cause death,...
Among the different developed solid-state nanopores, nanopores constructed in a monolayer of molybde...