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March 3, 2026
Construction of sub-methanol-molecule-scale proton channels in SPBI/POSS-SO3H composite membranes for high-performance direct methanol fuel cells
GL
Guoliang Liu
MF
Meiling Fan
ZG
Zaijun Gan
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Key Points
Enhanced conductivity is achieved through the creation of sub-methanol-molecule-scale proton channels, improving efficiency.
The methanol fuel cell shows a significant increase in performance with higher proton conductivity at the molecular level.
This analysis focuses on the structural and material properties of composite membranes to optimize performance in fuel cells.
The findings may enable advancements in fuel cell technology, addressing limitations of current membrane materials.
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Liu et al. (Sat,) studied this question.
synapsesocial.com/papers/69a7613fc6e9836116a2efbc
https://doi.org/https://doi.org/10.1016/j.ijhydene.2026.154041
Construction of sub-methanol-molecule-scale proton channels in SPBI/POSS-SO3H composite membranes for high-performance direct methanol fuel cells | Synapse