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Enhanced thermoelectric properties of flexible aerosol-jet printed carbon nanotube-based nanocomposites

机译:柔性气溶胶喷射印刷的碳纳米管基纳米复合材料的增强的热电性能

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Aerosol-jet printing allows functional materials to be printed from inks with a wide range of viscosities and constituent particle sizes onto various substrates, including the printing of organic thermoelectric materials on flexible substrates for low-grade thermal energy harvesting. However, these materials typically suffer from relatively poor thermoelectric performance, compared to traditional inorganic counterparts, due to their low Seebeck coefficient, S, and electrical conductivity, σ. Here, we demonstrate a modified aerosol-jet printing technique that can simultaneously incorporate well-dispersed high-S Sb2Te3 nanoflakes and high-σ multi-walled carbon nanotubes (MWCNTs) providing good inter-particle connectivity to significantly enhance the thermoelectric performance of poly(3,4-ethylenedioxythiophene) polystyrene sulfonate structures on flexible polyimide substrates. A nominal loading fraction of 85 wt. % yielded a power factor of ~41 μW/mK2, which is among the highest for printed organic-based structures. Rigorous flexing and fatigue tests were performed to confirm the robustness and stability of these aerosol-jet printed MWCNT-based thermoelectric nanocomposites.
机译:气溶胶喷射印刷允许将功能性材料从具有各种粘度和组成颗粒大小的油墨印刷到各种基材上,包括在柔性基材上印刷有机热电材料以进行低级热能收集。但是,与传统的无机材料相比,这些材料通常具有相对差的热电性能,这是因为它们的塞贝克系数S和电导率σ低。在这里,我们展示了一种改良的气溶胶喷射印刷技术,该技术可以同时掺入分散良好的高S Sb 2 Te 3 纳米薄片和高σ多壁碳纳米管( MWCNT)提供了良好的粒子间连接性,从而显着增强了柔性聚酰亚胺基材上的聚(3,4-乙撑二氧噻吩)聚苯乙烯磺酸盐结构的热电性能。标称负载率为85 wt。 %产生的功率因数约为41μW/ mK 2 ,在印刷的有机基结构中是最高的。进行了严格的弯曲和疲劳测试,以确认这些气溶胶喷射印刷的基于MWCNT的热电纳米复合材料的坚固性和稳定性。

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