نتایج جستجو برای: quaternized polyethersulfone
تعداد نتایج: 794 فیلتر نتایج به سال:
Quaternized polymers as ionomeric binders in the electrode enable operation of alternative fuel cells under high pH conditions or anhydrous to overcome challenges proton exchange membrane cells. Hydrophobicity ionomers derived from fluorine content is beneficial performance, but due synthetic difficulties, not many fluorinated quaternized have been reported with their influence on behavior thes...
Characterization of Polyethersulfone (PES) and Polyvinylidene Difluoride (PVDF) Resistive Membranes under In Vitro Staphylococcus aureus Challenge by Sandra Nakasone Department of Biomedical Engineering Duke University Date:_______________________ Approved: ___________________________ Bruce Klitzman, Supervisor ___________________________ William (Monty) Reichert ___________________________ Fan...
A new type of wood plastic composite, Eucalyptus/PES(Polyethersulfone) blend, was developed. It was designed to be used in LS (Laser Sintering) with reduced energy usage with cost savings. The preparation of Eucalyptus/PES blend and part sintering were under fixed processing conditions and parameters. Through mechanical testing, it was discovered that the strength of prototypes is low due to th...
Polyethersulfone (PES) is one of the most important polymeric materials and is widely used in separation fields. PES and PES-based membranes show outstanding oxidative, thermal and hydrolytic stability as well as good mechanical and film-forming properties. PES membranes could endure many kinds of sterilized methods, including epoxy ethane gas, steam, and γ-ray. Furthermore, PES-based membranes...
Composite microfiltration polyethersulfone membranes incorporating molecularly imprinted particles (MIPs) were developed for efficient and selective adsorption of 17β-estradiol from water.
Quaternized polymers mimicking the antimicrobial peptides were created by tuning the side-chain amphiphilicity using a first-time approach of post-functionalization. They displayed excellent efficacy against pathogenic bacteria even in human plasma and membrane disruptive mode of action. The optimized polymers and degraded products were non-hemolytic.
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