热电效应
化学
超分子化学
盐(化学)
电化学
结晶
寄主(生物学)
电极
化学工程
晶体结构
结晶学
物理化学
热力学
有机化学
物理
生物
工程类
生态学
作者
Hongyao Zhou,Teppei Yamada,Nobuo Kimizuka
摘要
Thermo-electrochemical cells have potential to generate thermoelectric voltage 1 order higher than that given by semiconductor materials. To overcome the current issues in thermoelectric energy conversion, it is of paramount importance to grow and fulfill the full potential of thermo-electrochemical cells. Here we report a rational supramolecular methodology that yielded the highest Seebeck coefficient of ca. 2.0 mV K–1 around ambient temperatures. This is based on the encapsulation of triiodide ions in α-cyclodextrin, whose equilibrium is shifted to the complexation at lower temperatures, whereas it is inverted at elevated temperatures. This temperature-dependent host–guest interaction provides a concentration gradient of redox ion pairs between two electrodes, leading to the eminent performance of the thermo-electrochemical cells. The figure of merit for this system, zT reached a high value of 5 × 10–3. The introduction of host–guest chemistry to thermoelectric cells thus provides a new perspective in thermoelectric energy conversion.
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