Graphene oxide (GO) has received tremendous attention thanks to its unique two-dimensional feature, fantastic mechanical and chemical properties. In this paper, GO was fabricated and then was modified by chitosan. After the quaternization of modified GO, the positively charged material was used as inorganic additive to prepare polyethersulfone (PES) hybrid nanofiltration membrane with phase inversion method using N, N-dimethylacetamide (DMAc) as solvent, polyvinylpyrrolidone (PVP) as pore-forming agent. The effect of modified GO content on the separating property of hybrid membranes was investigated. The results suggested that the positively charged nanofiltration membranes were prepared successfully without the changes of morphology. With ...
Poly (m-phenylene isophthalamide)/graphene oxide (PMIA/GO) composite nanofiltartion (NF) membranes w...
Membrane biofouling has proved to be a major obstacle when it comes to membrane efficiency in membra...
Membrane morphology of integrally skinned asymmetric membranes made by phase inversion can be tailor...
Surface zwitterionization of graphene oxide (GO) was firstly conducted by grafting poly(sulfobetaine...
The urgent concern of water shortage have promoted to the development of different sustainable techn...
Serious membrane fouling has limited the development of ultrafiltration membrane technology for wate...
Graphene oxide (GO) is emerging as an excellent next generation material for water purification memb...
Graphene oxide (GO) has shown great promise as a nanofiller to enhance the performance of mixed matr...
© 2018 The Korean Society of Industrial and Engineering Chemistry In this work, novel nanofiltration...
Membrane-based separation technology has attracted great interest in many separation fields due to i...
In this research, active groups of biguanide were grafted to the surface of graphene oxide sheets th...
Membrane-based separation technology has attracted great interest in many separation fields due to i...
In the present study, graphene oxide was functionalized by hyperbranched epoxy and then used as an a...
Graphene oxide (GO) is a chemical derivative of graphene which possesses interesting characteristics...
Membrane based separation system is considered as a promising technology to purify water, owing to i...
Poly (m-phenylene isophthalamide)/graphene oxide (PMIA/GO) composite nanofiltartion (NF) membranes w...
Membrane biofouling has proved to be a major obstacle when it comes to membrane efficiency in membra...
Membrane morphology of integrally skinned asymmetric membranes made by phase inversion can be tailor...
Surface zwitterionization of graphene oxide (GO) was firstly conducted by grafting poly(sulfobetaine...
The urgent concern of water shortage have promoted to the development of different sustainable techn...
Serious membrane fouling has limited the development of ultrafiltration membrane technology for wate...
Graphene oxide (GO) is emerging as an excellent next generation material for water purification memb...
Graphene oxide (GO) has shown great promise as a nanofiller to enhance the performance of mixed matr...
© 2018 The Korean Society of Industrial and Engineering Chemistry In this work, novel nanofiltration...
Membrane-based separation technology has attracted great interest in many separation fields due to i...
In this research, active groups of biguanide were grafted to the surface of graphene oxide sheets th...
Membrane-based separation technology has attracted great interest in many separation fields due to i...
In the present study, graphene oxide was functionalized by hyperbranched epoxy and then used as an a...
Graphene oxide (GO) is a chemical derivative of graphene which possesses interesting characteristics...
Membrane based separation system is considered as a promising technology to purify water, owing to i...
Poly (m-phenylene isophthalamide)/graphene oxide (PMIA/GO) composite nanofiltartion (NF) membranes w...
Membrane biofouling has proved to be a major obstacle when it comes to membrane efficiency in membra...
Membrane morphology of integrally skinned asymmetric membranes made by phase inversion can be tailor...