Porous graphene and other atomically thin 2D materials are regarded as highly promising membrane materials for high-performance gas separations due to their atomic thickness, large-scale synthesizability, excellent mechanical strength, and chemical stability. When these atomically thin materials contain a high areal density of gas-sieving nanoscale pores, they can exhibit both high gas permeances and high selectivities, which is beneficial for reducing the cost of gas-separation processes. Here, recent modeling and experimental advances in nanoporous atomically thin membranes for gas separations is discussed. The major challenges involved, including controlling pore size distributions, scaling up the membrane area, and matching theory with ...
Nanoporous single-layer graphene is promising as an ideal membrane because of its extreme thinness, ...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
Membrane-based processes are regarded as sustainable replacement to traditionally used energy-intens...
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 Mechanical Engineering, 2017.Pa...
Molecular sieving across atomically thin nanoporous graphene is predicted to enable superior gas sep...
Nanoporous single-layer graphene is regarded as a highly promising membrane material for gas separat...
Membrane separation applications such as water desalination and carbon capture require high permeanc...
In comparison with traditional chemical separation processes, membrane separation is much simpler an...
Pore size is a crucial factor impacting gas separation, but difficult to control for a single-layer ...
Porous graphene membranes emerged as promising alternatives for gas separation applications due to t...
Single-layer graphene (SLG) membranes, hosting molecular-sieving nanopores have been regarded as the...
Membranes play an important role in gas separation on account of their low cost, energy efficiency, ...
Nanoporous single-layer graphene is promising as an ideal membrane because of its extreme thinness, ...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
Nanoporous single-layer graphene is promising as an ideal membrane because of its extreme thinness, ...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
Membrane-based processes are regarded as sustainable replacement to traditionally used energy-intens...
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 Mechanical Engineering, 2017.Pa...
Molecular sieving across atomically thin nanoporous graphene is predicted to enable superior gas sep...
Nanoporous single-layer graphene is regarded as a highly promising membrane material for gas separat...
Membrane separation applications such as water desalination and carbon capture require high permeanc...
In comparison with traditional chemical separation processes, membrane separation is much simpler an...
Pore size is a crucial factor impacting gas separation, but difficult to control for a single-layer ...
Porous graphene membranes emerged as promising alternatives for gas separation applications due to t...
Single-layer graphene (SLG) membranes, hosting molecular-sieving nanopores have been regarded as the...
Membranes play an important role in gas separation on account of their low cost, energy efficiency, ...
Nanoporous single-layer graphene is promising as an ideal membrane because of its extreme thinness, ...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
Nanoporous single-layer graphene is promising as an ideal membrane because of its extreme thinness, ...
Gas filtration by means of membranes is becoming increasingly important for industrial processes due...
Membrane-based processes are regarded as sustainable replacement to traditionally used energy-intens...