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Abstract Microfluidic aluminium–air fuel cells (µA–aFCs) offer attractive low-cost, compact, and environmentally benign power sources for portable and off-grid electronics. Their performance is strongly governed by electrolyte transport within the paper-based microfluidic channel. Here we demonstrate that the performance of µAl–aFCs can be significantly improved by replacing conventional cellulose (Whatman #1) electrolyte substrates with glass fiber (GF) paper.
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