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Polymer electrolyte membranes (PEMs) are the critical components of polymer electrolyte fuel cells (PEFCs).
Joining components of polymer composites through adhesive bonds is becoming increasingly popular.
Bipolar plate is one of the most important and costliest components of polymer electrolyte membrane (PEM) fuel cells.
Components of polymer preparation and the nanocomposite of polymer with ZnO are optimized for realizing the molecular imprinted layer of the sensor.
The difference in density between the individual components of polymer blends was found to be the reason for the obtained image contrast.
Multi-phase transport of reactant and product species, momentum, heat (energy), electron and proton in the components of polymer electrolyte membrane (PEM) fuel cells forms the three inter-related circuits for mass, heat (energy) and electricity.
This research aims to study the interactions between main self compacting concrete components (filler and high dose of chemical admixtures) and main components of polymer modified concrete which is polymer itself.
Furthermore, a critical review of CO2 co-polymers as components of polymer blend with a focus on the most relevant CO2 based aliphatic polycarbonates, poly (propylene carbonates) (PPC), is conducted.
Similar to putrescine (1,4-diaminobutane), cadaverine serves as a component of polymers such as polyamides and polyurethane, and as a component of chelating agents and other additives.
By adjusting the component of polymers, the advanced DE possess a high actuation coefficient β (51.54 MPa−1) and shows a high actuated strain of 52.08% at a low electric field of 21.57 kV/mm without pre-strain.
Finally, changes in the activities of commercial trypsin and transglutaminase were quantified in the presence of: A) 30 second methanol rinses of silicone surfaces and compounds transferred to cotton swabs during gentle rubbing of polymer surfaces; and B) individual components of silicone polymers alone and in combination.
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