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Aqueous thermogalvanic cells with a high Seebeck coefficient for low-grade heat harvest

机译:塞贝克系数高的热电原电池用于低等级的热收集

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摘要

Thermogalvanic cells offer a cheap, flexible and scalable route for directly converting heat into electricity. However, achieving a high output voltage and power performance simultaneously from low-grade thermal energy remains challenging. Here, we introduce strong chaotropic cations (guanidinium) and highly soluble amide derivatives (urea) into aqueous ferri/ferrocyanide ([Fe(CN)6]4−/[Fe(CN)6]3−) electrolytes to significantly boost their thermopowers. The corresponding Seebeck coefficient and temperature-insensitive power density simultaneously increase from 1.4 to 4.2 mV K−1 and from 0.4 to 1.1 mW K−2 m−2, respectively. The results reveal that guanidinium and urea synergistically enlarge the entropy difference of the redox couple and significantly increase the Seebeck effect. As a demonstration, we design a prototype module that generates a high open-circuit voltage of 3.4 V at a small temperature difference of 18 K. This thermogalvanic cell system, which features high Seebeck coefficient and low cost, holds promise for the efficient harvest of low-grade thermal energy.
机译:热电原电池为直接将热量转化为电能提供了一种廉价,灵活且可扩展的途径。然而,利用低等级的热能同时实现高输出电压和功率性能仍然具有挑战性。在这里,我们将强离液阳离子(胍盐)和高可溶性酰胺衍生物(尿素)引入亚铁/亚铁氰化物水溶液中[[Fe(CN)6] 4- / [Fe(CN)6] 3-)电解质来显着提高其热功率。相应的塞贝克系数和对温度不敏感的功率密度同时从1.4 mV K -1 和从0.4 tomW K -2 m -2 < / sup>。结果表明胍和尿素协同增加了氧化还原对的熵差,并显着增加了塞贝克效应。作为演示,我们设计了一个原型模块,该模块可在18°K的小温差下产生3.4µV的高开路电压,该热原电池单元系统具有高塞贝克系数和低成本,为有效收获三叶草提供了希望。低品位的热能。

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