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Ionic diode films with asymmetric polyelectrolyte interfaces for moisture-electromagnetic coupled energy harvesting
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作者 Guangtao Zan Shengyou Li Kaiying Zhao 《Chinese Journal of Structural Chemistry》 2025年第8期1-3,共3页
Moisture-enabled electricity generation(MEG)has emerged as a promising sustainable energy harvesting technology,comparable to photovoltaics,thermoelectrics,and triboelectrics[1].MEGs generate electricity by converting... Moisture-enabled electricity generation(MEG)has emerged as a promising sustainable energy harvesting technology,comparable to photovoltaics,thermoelectrics,and triboelectrics[1].MEGs generate electricity by converting the chemical potential of moisture into electric energy through interactions with hygroscopic materials and nanostructured interfaces.Unlike solar or thermal harvesters,MEGs operate continuously by utilizing ubiquitous atmospheric moisture,granting them unique spatial and temporal adaptability.Despite nearly a decade of progress and the exploration of diverse material systems for MEG,the overall output power remains significantly limited due to inherently low charge carrier concentrations and restricted ion diffusion fluxes[2].As a result,standalone MEG devices often deliver low and unstable output,limiting practical applications.To enhance performance and versatility,recent efforts have explored hybridization of MEG with other ambient energy sources such as triboelectric or thermoelectric effects. 展开更多
关键词 nanostructured interfacesunlike ion diffusion fluxes converting chemical potential moisture electric energy moisture electromagnetic coupled energy harvesting charge carrier concentrations hygroscopic materials ion diode films asymmetric polyelectrolyte interfaces
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