自愈水凝胶
阳离子聚合
静电相互作用
人机交互
材料科学
化学
计算机科学
高分子化学
化学物理
作者
Carlos M. Andreu,Ana López-Hazas,Sonia Merino,Ester Vázquez,Óscar J. Durá
标识
DOI:10.1021/acsaem.4c02835
摘要
Thermoelectric hydrogels have the potential to be used in energy conversion devices for harnessing ubiquitous low-grade heat and generating useful electricity. This can be achieved through the use of thermogalvanic cells based on redox chemistry. While significant attention has been focused toward maximizing voltage for a given temperature gradient in liquid-based thermocells, it is crucial to consider both voltage and current density for accurate power output estimation in the case of gel-based thermocells. Here, we analyze the influence of the functional groups and the redox pair concentration over the voltage and current density in two different hydrogels. Our results confirm a path to enhance the current density in thermogalvanic hydrogels by incorporating a cationic pair into a cationic electroactive network (CN). This approach facilitates the movement of redox pairs, therefore increasing the power density output.
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