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Polymer gels with tunable ionic Seebeck coefficient for ultra-sensitive printed thermopiles

机译:具有可调节离子塞贝克系数的聚合物凝胶用于超敏感印刷热电堆

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摘要

Measuring temperature and heat flux is important for regulating any physical, chemical, and biological processes. Traditional thermopiles can provide accurate and stable temperature reading but they are based on brittle inorganic materials with low Seebeck coefficient, and are difficult to manufacture over large areas. Recently, polymer electrolytes have been proposed for thermoelectric applications because of their giant ionic Seebeck coefficient, high flexibility and ease of manufacturing. However, the materials reported to date have positive Seebeck coefficients, hampering the design of ultra-sensitive ionic thermopiles. Here we report an “ambipolar” ionic polymer gel with giant negative ionic Seebeck coefficient. The latter can be tuned from negative to positive by adjusting the gel composition. We show that the ion-polymer matrix interaction is crucial to control the sign and magnitude of the ionic Seebeck coefficient. The ambipolar gel can be easily screen printed, enabling large-area device manufacturing at low cost.
机译:测量温度和热通量对于调节任何物理,化学和生物过程都很重要。传统的热电堆可以提供准确且稳定的温度读数,但它们基于具有低塞贝克系数的脆性无机材料,并且难以大面积制造。近来,由于其巨大的离子塞贝克系数,高柔韧性和易于制造,已经提出将聚合物电解质用于热电应用。但是,迄今报道的材料的塞贝克系数为正,从而妨碍了超灵敏离子热电堆的设计。在这里,我们报告了一种具有巨大负离子塞贝克系数的“双极性”离子聚合物凝胶。可通过调节凝胶组成将后者从负数调整为正数。我们表明,离子-聚合物基体相互作用对于控制离子塞贝克系数的符号和大小至关重要。可以容易地丝网印刷双极性凝胶,从而可以低成本制造大面积的器件。

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