Temperature-adaptive self-regenerating ionic-thermoelectric cycles for time-domain thermal energy harvesting
收藏Figshare2025-08-14 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Temperature-adaptive_self-regenerating_ionic-thermoelectric_cycles_for_time-domain_thermal_energy_harvesting/29909345
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This work develops a hydrogel-based ionic thermoelectric cycling device that harvest day-night temperature differences without external charging (t-ITC device). Employing a polyacrylamide-polyvinylpyrrolidone (PAM-PVP) matrix with KI3/KI and K3Fe(CN)6/K4Fe(CN)6 redox couples, both utilizing the same counter-ion K+ for regeneration, the t-ITC device attains a peak energy density of 3.28 kJ m–2 per cycle and a relative Carnot efficiency of 8.39% with 70% heat recuperation, under cycling conditions between 60 °C and 10 °C. This work highlights the potential of t-ITC devices for global-scale time-domain thermal energy on a global scale, across diverse environments, such as hot deserts and cold plateaus.
创建时间:
2025-08-14



