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Three types of stack structure designs of polymer electrolyte membrane electrolyte fuel cells (PEMFCs) were reviewed and evaluated under various humidities and temperatures, including bipolar, pseudo bipolar and monopolar (strip) stacks.
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The stack design of AFCs is different from the most common designs of polymer-electrolyte or solid oxide fuel cells.
Innovative designs of polymers and salts which suppress crystallinity and yield amorphous polymer electrolytes with a low Tg have led to substantial improvements in the level of ionic conductivity compared with early systems, but the above mentioned barrier remains.
This work opens a new door for structure and property design of polymer composites.
An overview is presented of the theoretical approach to the design of polymer composite materials.
This work presents numerical simulations aimed at optimizing the design of polymer flat plate solar collectors.
Hence, the numerical model could assist in decisions regarding the design of polymer composite products.
Such information is vital in the design of polymer composite sandwich structures as energy absorbers.
Charging and poling can be viewed as an additional degree of freedom in the design of polymer electret devices.
The design of polymer carriers with tunable degradation and cargo release is fundamental for applications in drug and gene delivery.
The results will have a certain reference value to the design of polymer optical waveguide in M Z modulator.
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