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In this work, ZIF-7-NH2 membrane with improved both H2 permeance and H2/CO2 selectivity than reported mono-ligand ZIF-7 membrane was first prepared.
In this work, a catechol-bearing molecule (dopamine) was chemically grafted onto alginate to develop a polysaccharide-based membrane with improved adhesive properties.
This prompted us to visualize the exact localization of SLP65, CIN85 and CD2AP to the plasma membrane with improved effective resolution using total internal reflection fluorescence (TIRF) microscopy.
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This work opens new avenues to engineer advanced membranes with improved performance and selectivity.
These results indicate that SPEEK-based composite membranes with improved membrane performance, lower vanadium crossover, and good single cell performance were successfully prepared by incorporating G-AMH-3.
The specific advantages of this method (low temperature chemical process, large variety of material precursors, material structure adaptability, and coating process possibilities) are described here in relation with transport mechanisms in solid matrices, as a very suitable way to design and synthesize membranes with improved performance.
The interest in designing new nanocomposite proton exchange membranes (PEMs) with improved performance for high-temperature polymer electrolyte membrane fuel cells (HT-PEMFCs) and direct methanol fuel cells (DMFCs) is fast growing.
The systematic characterization procedure based on the study of dielectric spectra and conductivity allowed to establish a potential approach to control the addition of GO in the design of other composite membranes for PEMFC with improved properties.
Sputter deposition was investigated as a tool for manufacturing proton-exchange membrane fuel cell (PEMFC) electrodes with improved performance and better catalyst utilization vs. commercial electrode.
We present evidence that SBD binds to artificial membranes with raft-like composition, with improved binding efficiency at low pH and in the presence of gangliosides.
With improved image processing and membrane markers, subsequent studies will be aimed at progressing to a three compartment model.
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