Graphene oxide-based composite membranes have received enormous attention for highly efficient water desalination. Herein, we prepare arginine/graphene oxide (Arg/GO) composite membranes by surface functionalizing GO nanosheets with arginine amino acid. Arginine has a unique combination of hydroxyl and amino functional groups that cross-link GO nanosheets through hydrogen bonding and electrostatic interactions. The as-prepared Arg@GO composite membranes with different thicknesses are used to separate the salt and dye molecules. The 900-nm-thick Arg@GO composite membrane shows high rejection of 98% for NaCl and 99.8% for MgCl2, Ni(NO3)2, and Pb(NO3)2 with good water permeance. Such a membrane also shows a high separation efficiency (100%) fo...
Stacked graphene oxide (GO) nano-sheets with plentiful nanopores incorporated onto polymeric membran...
Two-dimensional graphene oxide (GO) in hybrid membranes provides fast water transfer across its surf...
Nanostructured graphene oxide (GO) membranes offer outstanding mass transport performances such as u...
© 2017 Elsevier B.V. Porous reduced graphene oxide (PRGO) was obtained by making pores on graphene o...
Hybrid composite membranes have great potential for desalination applications since water transport ...
Graphene and its derivatives are very attractive for constructing membranes for high-efficiency sepa...
Graphene oxide (GO) based membranes have attracted considerable interest in desalination and organic...
Effective dye separation and desalination are critical for the treatment of highly saline textile wa...
Effective dye separation and desalination are critical for the treatment of highly saline textile wa...
Two kinds of diamine molecules, including 1, 4-cyclohyxanediamine (CDA) and p-phenylenediamine (pPDA...
Membranes with high water permeance, near-zero rejection to inorganic salts (such as NaCl and Na2SO4...
Two-dimensional graphene oxide (GO)-based lamellar membranes have been widely developed for desalina...
Although pristine graphene oxide (GO)-based membranes have previously demonstrated promising molecul...
Many materials with varied characteristics have been used for water purification and separation appl...
For the selective water-permeation across dense membrane, constructing continuous pathways with high...
Stacked graphene oxide (GO) nano-sheets with plentiful nanopores incorporated onto polymeric membran...
Two-dimensional graphene oxide (GO) in hybrid membranes provides fast water transfer across its surf...
Nanostructured graphene oxide (GO) membranes offer outstanding mass transport performances such as u...
© 2017 Elsevier B.V. Porous reduced graphene oxide (PRGO) was obtained by making pores on graphene o...
Hybrid composite membranes have great potential for desalination applications since water transport ...
Graphene and its derivatives are very attractive for constructing membranes for high-efficiency sepa...
Graphene oxide (GO) based membranes have attracted considerable interest in desalination and organic...
Effective dye separation and desalination are critical for the treatment of highly saline textile wa...
Effective dye separation and desalination are critical for the treatment of highly saline textile wa...
Two kinds of diamine molecules, including 1, 4-cyclohyxanediamine (CDA) and p-phenylenediamine (pPDA...
Membranes with high water permeance, near-zero rejection to inorganic salts (such as NaCl and Na2SO4...
Two-dimensional graphene oxide (GO)-based lamellar membranes have been widely developed for desalina...
Although pristine graphene oxide (GO)-based membranes have previously demonstrated promising molecul...
Many materials with varied characteristics have been used for water purification and separation appl...
For the selective water-permeation across dense membrane, constructing continuous pathways with high...
Stacked graphene oxide (GO) nano-sheets with plentiful nanopores incorporated onto polymeric membran...
Two-dimensional graphene oxide (GO) in hybrid membranes provides fast water transfer across its surf...
Nanostructured graphene oxide (GO) membranes offer outstanding mass transport performances such as u...