Polysulfone (PS) membranes blended with different loadings of arabic gum (AG) were synthesized using phase inversion method and the antibacterial properties of the synthesized membranes were tested using a number Gram-negative (Escherichia coli, Klebsiella pneumonia and Pseudomonas aeruginosa) and Gram-positive (Staphylococcus aureus) bacterial species. It was shown that AG addition to the dope polymer solutions essentially changed porous structure, hydrophilicity and zeta potential of the cast PS/AG membranes. These changes were due to the amphiphilic properties of AG macromolecules that contained negatively charged hydrophilic residues. A pronounced decrease in bacterial attachment was seen in the field emission scanning electron microsco...
Silver-loading asymmetric polyethersulfone (PES) asymmetric membrane was prepared via the simple pha...
Novel thin film composite (TFC) polyamide (PA) membranes blended with 0.01⁻0.2 wt.% of Acacia ...
In this work, the polyethersulfone (PES)-based membranes were prepared via phase inversion technique...
Despite extensive research efforts focusing on tackling membrane biofouling, one of the biggest prob...
Membrane biofouling has proved to be a major obstacle when it comes to membrane efficiency in membra...
Novel polyethersulfone (PES) membranes blended with 0.1–3.0 wt. % of Acacia gum (AG) as a pore-forme...
The antimicrobial and bacterial anti-adhesive properties of polysulfone (PSU) membranes modified wit...
The antimicrobial and bacterial anti-adhesive properties of polysulfone (PSU) membranes modified wit...
Antibacterial properties of engineered materials are important in the transition to a circular econo...
The aim of this research was to study the possibility of using silver nanoflakes (SNFs) as an antiba...
This work discussed the fabrication of polysulfone (PSF) ultrafiltration membranes with hydrophilic ...
Polysulfone ultrafiltration membranes were fabricated using various sizes (20, 40, and 90–210 nm) of...
Herein we report a novel PES UF membrane via blending with a multifunctional comb copolymer containi...
For ages, the polymeric membrane such as PSf is widely used in liquid separation for various applica...
Functional matrix membranes formed by blending hydrophilic polymers with polysulfone (PSF) can provi...
Silver-loading asymmetric polyethersulfone (PES) asymmetric membrane was prepared via the simple pha...
Novel thin film composite (TFC) polyamide (PA) membranes blended with 0.01⁻0.2 wt.% of Acacia ...
In this work, the polyethersulfone (PES)-based membranes were prepared via phase inversion technique...
Despite extensive research efforts focusing on tackling membrane biofouling, one of the biggest prob...
Membrane biofouling has proved to be a major obstacle when it comes to membrane efficiency in membra...
Novel polyethersulfone (PES) membranes blended with 0.1–3.0 wt. % of Acacia gum (AG) as a pore-forme...
The antimicrobial and bacterial anti-adhesive properties of polysulfone (PSU) membranes modified wit...
The antimicrobial and bacterial anti-adhesive properties of polysulfone (PSU) membranes modified wit...
Antibacterial properties of engineered materials are important in the transition to a circular econo...
The aim of this research was to study the possibility of using silver nanoflakes (SNFs) as an antiba...
This work discussed the fabrication of polysulfone (PSF) ultrafiltration membranes with hydrophilic ...
Polysulfone ultrafiltration membranes were fabricated using various sizes (20, 40, and 90–210 nm) of...
Herein we report a novel PES UF membrane via blending with a multifunctional comb copolymer containi...
For ages, the polymeric membrane such as PSf is widely used in liquid separation for various applica...
Functional matrix membranes formed by blending hydrophilic polymers with polysulfone (PSF) can provi...
Silver-loading asymmetric polyethersulfone (PES) asymmetric membrane was prepared via the simple pha...
Novel thin film composite (TFC) polyamide (PA) membranes blended with 0.01⁻0.2 wt.% of Acacia ...
In this work, the polyethersulfone (PES)-based membranes were prepared via phase inversion technique...