ENHANCING ELECTRON TRANSFER EFFICIENCY IN MICROBIAL FUELCELLS THROUGH GOLD NANOPARTICLE MODIFICATION OF SACCHAROMYCES CEREVISIAE

Teresė Kondrotaitė1, Antanas Zinovičius1, 2, Domas Pirštelis2, Inga Morkvėnaitė-Vilkončienė1, 2

1 Vilnius Tech

2 State Research Institute Centre for Physical Sciences and Technology

[email protected]

This study investigates the microbial fuel cell (MFC) performance through the modification of Saccharomyces cerevisiae with gold nanoparticles (AuNPs) and polypyrrole (PPy). The yeast:AuNP-modified electrodes generated the highest median current of 2.57 nA, significantly outperforming the yeast:PPy-modified (0.82 nA) electrodes. Power density measurements further confirmed the superior performance of the yeast:AuNP-modified electrodes, showcasing a notable improvement in current densities and power outputs. Yeast:AuNP-modified graphite electrodes produced a higher power density of 22.8 mW/m2, albeit with a lower current density, compared to electrodes modified solely with yeast which produced a power density of 5.7 mW/m2. These findings highlight the potential of AuNPs in significantly enhancing the electrochemical performance of yeast-based MFCs, providing a promising approach for the development of more efficient bioelectrochemical systems.