The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutron and X‐ray reflectivity, and their performance is benchmarked in reverse osmosis water desalination. PA membranes are synthesized by the interfacial polymerization of m‐phenylenediamine (MPD) and trimesoyl chloride (TMC), varying systematically reaction time, concentration, and stoichiometry, to yield large‐area exceptionally planar films of ≈10 nm thickness. Reflectivity is employed to precisely determine membrane thickness and roughness, as well as the (TMC/MPD) concentration profile, and response to hydration in the vapor phase. PA film thickness is found to increase linearly with reaction time, albeit with a nonzero intercept, and the c...
Surfactant-assisted interfacial polymerization (IP) has shown strong potential to improve the separa...
A systematic investigation of membrane surface nano-structuring (SNS) with surface tethered hydrophi...
Aromatic polyamide films form the active layer in reverse osmosis desalination membranes. Despite wi...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
While polyamide (PA) membranes are widespread in water purification and desalination by reverse osmo...
A novel sequential hexafluoroalcohol (SHFA) membrane composed of a non-substituted aromatic polyamid...
A novel sequential hexafluoroalcohol (SHFA) membrane composed of a non-substituted aromatic polyamid...
Polyamide nanofilms made at the aqueous-organic interface have been developed for a few decades, yet...
A molecular-level understanding of the structure–property relationship of polyamide (PA) active laye...
Aromatic polyamide films form the active layer in reverse osmosis desalination membranes. Despite wi...
Aromatic polyamide films form the active layer in reverse osmosis desalination membranes. Despite wi...
Surfactant-assisted interfacial polymerization (IP) has shown strong potential to improve the separa...
A systematic investigation of membrane surface nano-structuring (SNS) with surface tethered hydrophi...
Aromatic polyamide films form the active layer in reverse osmosis desalination membranes. Despite wi...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
The structure and hydration of polyamide (PA) membranes are investigated with a combination of neutr...
While polyamide (PA) membranes are widespread in water purification and desalination by reverse osmo...
A novel sequential hexafluoroalcohol (SHFA) membrane composed of a non-substituted aromatic polyamid...
A novel sequential hexafluoroalcohol (SHFA) membrane composed of a non-substituted aromatic polyamid...
Polyamide nanofilms made at the aqueous-organic interface have been developed for a few decades, yet...
A molecular-level understanding of the structure–property relationship of polyamide (PA) active laye...
Aromatic polyamide films form the active layer in reverse osmosis desalination membranes. Despite wi...
Aromatic polyamide films form the active layer in reverse osmosis desalination membranes. Despite wi...
Surfactant-assisted interfacial polymerization (IP) has shown strong potential to improve the separa...
A systematic investigation of membrane surface nano-structuring (SNS) with surface tethered hydrophi...
Aromatic polyamide films form the active layer in reverse osmosis desalination membranes. Despite wi...