Designing membrane materials from one-atom-thick structures is highly promising in separation and filtration applications for the reason that they offer the ultimate precision in modifying the atomic structures and chemistry for optimizing performance, and thus resolving the permeation-selectivity trade-off. In this work, we explore the molecular dynamics of gas diffusion in the gallery space between functionalized graphene layers as well as within nanopores across the multilayers. We have identified highly selective gas permeation that agrees with recent experimental measurements and is promising for advancing gas separation technologies such as hydrogen separation, helium/nitrogen generation, and CO<sub>2</sub> sequestration. The roles of...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
Gaseous molecular separation is crucial for carbon dioxide capture and storage, hydrogen purificati...
Graphene is a distinct two-dimensional material that offers a wide range of opportunities for membra...
Nanoporous single-layer graphene is regarded as a highly promising membrane material for gas separat...
CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICO - CNPQCOORDENAÇÃO DE APERFEIÇOAMENTO D...
Membrane separation applications such as water desalination and carbon capture require high permeanc...
It is demonstrated that the fluorine-modified porous graphene membrane has excellent selectivity for...
Molecular sieving across atomically thin nanoporous graphene is predicted to enable superior gas sep...
Graphene oxide (GO), as an ultrathin, high-flux, and energy-efficient separation membrane, has shown...
ConspectusGas separation is one of the most important industrial processes and is poised to take a l...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, February ...
Thanks to its single atom thickness and its mechanical strength, nanoporous graphene is currently be...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...
Gaseous molecular separation is crucial for carbon dioxide capture and storage, hydrogen purificati...
Graphene is a distinct two-dimensional material that offers a wide range of opportunities for membra...
Nanoporous single-layer graphene is regarded as a highly promising membrane material for gas separat...
CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICO - CNPQCOORDENAÇÃO DE APERFEIÇOAMENTO D...
Membrane separation applications such as water desalination and carbon capture require high permeanc...
It is demonstrated that the fluorine-modified porous graphene membrane has excellent selectivity for...
Molecular sieving across atomically thin nanoporous graphene is predicted to enable superior gas sep...
Graphene oxide (GO), as an ultrathin, high-flux, and energy-efficient separation membrane, has shown...
ConspectusGas separation is one of the most important industrial processes and is poised to take a l...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, February ...
Thanks to its single atom thickness and its mechanical strength, nanoporous graphene is currently be...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovati...
© 2018 The Royal Society of Chemistry. Two-dimensional nanomaterials can be used to create innovativ...