High Ionic Seebeck Effect in Natural Leaves
Abstract
AbstractPlants actively transport ions to sustain life, yet their capacity to convert heat to electricity via the ionic Seebeck effect has remained unexplored. Here, it is demonstrated that natural Ficus elastica leaves can generate ionic thermovoltages up to 7 V under mild temperature gradients, achieving a high ionic figure of merit of ∼5.6 at room temperature. This pronounced thermoelectric response arises from anion thermodiffusion through the apoplast and is significantly amplified by leaf desiccation and electrode selection. A dielectric capacitive model accounts for the observed enhancement. Notably, living leaves generate thermopower under light‐induced temperature gradients, underscoring the potential of in vivo ionic thermoelectric assays. These findings reveal an unrecognized energy‐harvesting function in plant tissue and introduce a biodegradable platform for sustainable thermal‐to‐electrical energy conversion.
Article Details
Authors (9)
Hungu Kang
Department of Chemistry Korea University Seoul 02841 South Korea
Hongwoo Lee
Department of Chemistry Seoul University Seoul 08826 South Korea
Cheljong Hong
Department of Chemistry Seoul University Seoul 08826 South Korea
Jiung Jang
Department of Chemistry Korea University Seoul 02841 South Korea
Sahar Ayachi
Department of Chemistry Korea University Seoul 02841 South Korea
Xin He
Pil Joon Seo
Alois Würger
Université de Bordeaux and CNRS LOMA (UMR 5798) Talence 33405 France
Hyo Jae Yoon
Department of Chemistry Korea University Seoul 02841 South Korea