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Fully Printed Organic-Inorganic Nanocomposites for Flexible Thermoelectric Applications

机译:用于柔性热电应用的全印刷有机无机纳米复合材料

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摘要

Thermoelectric materials, capable of interconverting heat and electricity, are attractive for applications in thermal energy harvesting as a means to power wireless sensors, wearable devices, and portable electronics. However, traditional inorganic thermoelectric materials pose significant challenges due to high cost, toxicity, scarcity, and brittleness, particularly when it comes to applications requiring flexibility. Here, we investigate organic-inorganic nanocomposites that have been developed from bespoke inks which are printed via an aerosol jet printing method onto flexible substrates. For this purpose, a novel in situ aerosol mixing method has been developed to ensure uniform distribution of Bi2Te3/Sb2Te3 nanocrystals, fabricated by a scalable solvothermal synthesis method, within a poly(3,4-ethylenedioxythiophene) polystyrene sulfonate matrix. The thermoelectric properties of the resulting printed nanocomposite structures have been evaluated as a function of composition, and the power factor was found to be maximum (similar to 30 mu W/mK(2)) for a nominal loading fraction of 85 wt % Sb2Te3 nanoflakes. Importantly, the printed nanocomposites were found to be stable and robust upon repeated flexing to curvatures up to 300 m(-1), making these hybrid materials particularly suitable for flexible thermoelectric applications.
机译:热电材料,能够互动和电力,对热能收集的应用是具有吸引力的应用,作为电动无线传感器,可穿戴设备和便携式电子设备的方法。然而,由于高成本,毒性,稀缺性和脆性,传统的无机热电材料构成了重大挑战,特别是当涉及需要灵活的应用时。在此,我们研究了从由丝状墨水开发的有机无机纳米复合材料,其通过气溶胶喷射方法印刷到柔性基板上。为此目的,已经开发了一种新颖的原位气溶胶混合方法,以确保通过可伸缩的溶剂热合成方法在聚(3,4-亚乙基氧基噻吩)聚苯乙烯磺酸盐基质中均匀地分布Bi2Te3 / Sb2Te3纳米晶体的分布。得到了所得印刷纳米复合材料结构的热电性能作为组合物的函数,发现功率因数是最大的(类似于30μW/ mk(2)),用于85wt%sb2te3纳米薄片的标称载量分数。重要的是,发现印刷的纳米复合材料在重复弯曲时稳定且稳健,以弯曲高达300μm(-1),使得这些混合材料特别适用于柔性热电应用。

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