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for device performance and stability, since they must sustain both electronic and ionic transport simultaneously. This is the case, for example, at electrode/electrolyte interfaces in organic batteries, where
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–electronic materials, and soft electronics to explore new approaches to thermal energy conversion. The project spans fundamental materials and transport phenomena, advanced functional materials, and deformable
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thermoelectrics, electrochemistry, mixed ionic–electronic materials, and soft electronics to explore new approaches to thermal energy conversion. The project spans fundamental materials and transport phenomena
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tissue formation, and limited spatial precision. Building on our recent advances in enzyme-triggered electrode fabrication in living systems (Strakosas et al., Science, 2023, https://doi.org/10.1126