Abstract
The development of bioelectrochemical systems requires careful selection of both their biotic and abiotic components to obtain sustainable devices. Herein, we report a biophotoelectrode obtained with polyhydroxybutyrate (PHB), a biopolymer, which purple non-sulphur bacteria produce as an energy stock under specific environmental conditions. The electrode was obtained by casting a mixture composed of PHB and carbon fibers in a 3:2 mass ratio. Following, the composite material was modified with polydopamine and thermally treated to obtain a hydrophilic electrode with improved electrochemical behavior. The bio-based electrode was tested with metabolically active cells of Rhodobacter capsulatus embedded in a biohybrid matrix of polydopamine. The system achieved enhanced catalytic activity under illumination, with an 18-fold increase in photocurrent production compared to biophotoelectrodes based on glassy carbon, reaching a current density of 12 ± 3 μ A cm −2 , after 30 min of light exposure at +0.32 V. The presented biocompatible electrode provides a sustainable alternative to metal-based and critical raw material-based electrodes for bioelectrochemical systems. Biobased electrode for microbial electrochemical systems. Bacteria-produced polymer for devices with enhanced colonization. Improved biofilm formation and photocurrent generation.
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CITATION STYLE
de Moura Torquato, L. D., Lacalamita, D., Matteucci, R. M., Franco, J. H., Labarile, R., Perrotta, A., … Stufano, P. (2024). Bacterial-Polyhydroxybutyrate for Biocompatible Microbial Electrodes. Journal of The Electrochemical Society, 171(5), 055502. https://doi.org/10.1149/1945-7111/ad40d6
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