Water is known as the most common and complicated liquid on earth. Meanwhile, graphene, defined as single/few layer graphite, is the first member in the 2-dimensional materials family and has emerged as a magic material. Interactions between water and graphene generate many interesting phenomena and applications. This thesis focuses on applying molecular dynamics (MD), a powerful computational tool, for investigating the graphene-water interactions associated with various energetic and environmental applications, ranging from the wettability modification, species adsorption, and nanofluidic transport to seawater desalination. A key component of one domain of applications involves a third component, namely salt ions. This thesis attempts tha...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
Atomistic Simulation of Desalination Ian Durr, Matheus Prates, and Jungkyu Park Kennesaw State Unive...
Atomistic Simulation of Desalination Ian Durr, Matheus Prates, and Jungkyu Park Kennesaw State Unive...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
Since 71% of the earth’s surface is covered by the sea, seawater desalination plays a pivotal role i...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
The increasing freshwater demand has triggered a critical need for expansion and development of desa...
Confined water can have properties dramatically different from bulk water, and these properties can ...
dissertationThe focus of this dissertation is the Molecular Dynamics (MD) simulation study of two di...
The increasing freshwater demand has triggered a critical need for expansion and development of desa...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
Atomistic Simulation of Desalination Ian Durr, Matheus Prates, and Jungkyu Park Kennesaw State Unive...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
Atomistic Simulation of Desalination Ian Durr, Matheus Prates, and Jungkyu Park Kennesaw State Unive...
Atomistic Simulation of Desalination Ian Durr, Matheus Prates, and Jungkyu Park Kennesaw State Unive...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
My research focused on investigating saltwater transport through nanoporous graphene membranes using...
Since 71% of the earth’s surface is covered by the sea, seawater desalination plays a pivotal role i...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
The increasing freshwater demand has triggered a critical need for expansion and development of desa...
Confined water can have properties dramatically different from bulk water, and these properties can ...
dissertationThe focus of this dissertation is the Molecular Dynamics (MD) simulation study of two di...
The increasing freshwater demand has triggered a critical need for expansion and development of desa...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
Atomistic Simulation of Desalination Ian Durr, Matheus Prates, and Jungkyu Park Kennesaw State Unive...
Molecular dynamics simulations are widely employed to analyze water and ion permeation through nanop...
Atomistic Simulation of Desalination Ian Durr, Matheus Prates, and Jungkyu Park Kennesaw State Unive...
Atomistic Simulation of Desalination Ian Durr, Matheus Prates, and Jungkyu Park Kennesaw State Unive...