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Updated: Feb 24, 2026

Asymmetric Thermoelectrochemical Cell for Harvesting Low-grade Heat under Isothermal Operation
Published on: February 5, 2020
Efecto Termoeléctrico Iónico en el Marco de la Termoelectricidad
Yidan Wu1, Weigang Ma1, Xing Zhang1
1Tsinghua University, Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Engineering Mechanics, Beijing 100084, China.
Abstract:
The fundamental nature of the ionic thermoelectric (i-TE) effect-whether it represents genuine thermoelectricity or merely an analogy-remains unresolved. Existing devices exploit ion migration within the electrolyte but lack interfacial contributions, and no experimental evidence of the Peltier effect in i-TE materials has been reported. A central question thus arises: if such a Peltier effect exists, do the Seebeck, Peltier, and Thomson coefficients of i-TE systems satisfy the Kelvin relations? Here, we systematically formulate the three thermoelectric effects in the i-TE context and provide the experimental observation of an ionic Peltier effect, whose cooling power exceeds that of conventional electrolytes by more than 2 orders of magnitude. Furthermore, we introduce an electromotive-force-based method to determine thermoelectric coefficients without direct heat-flux measurements, thereby enabling experimental verification of the Kelvin relations. These results resolve fundamental questions of the i-TE effect and establish its position within thermoelectricity.
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