Division of Advanced Materials, Korea Research Institute of Chemical Technology, 141 Gajeong-ro, Yuseong-gu, Daejeon 34114, Republic of Korea.
Nanoscale. 2016 Jun 7;8(21):10885-90. doi: 10.1039/c5nr07032e. Epub 2016 Jan 14.
Solution-processable telluride-based heterostructures coated with poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (Te-Bi2Te3/PEDOT:PSS) were synthesized through a solution-phase reaction at low temperatures. The water-based synthesis yielded
PSS-coated Te-Bi2Te3 nano-barbell structures with a high Seebeck coefficient that can be stably dispersed in water. These hybrid solutions were deposited onto a substrate by the spray-printing method to prepare thermoelectric generators. The thermoelectric properties of the Te-Bi2Te3/PEDOT:PSS hybrid films were significantly enhanced by a simple acid treatment due to the increased electrical conductivity, and the power factor of those materials can be effectively tuned over a wide range depending on the acid concentration of the treatment. The power factors of the synthesized Te-Bi2Te3/PEDOT:PSS hybrids were optimized to 60.05 μW m(-1) K(-2) with a Seebeck coefficient of 93.63 μV K(-1) and an electrical conductivity of 69.99 S cm(-1). The flexible thermoelectric generator fabricated by spray-printing Te-Bi2Te3/PEDOT:PSS hybrid solutions showed an open-circuit voltage of 1.54 mV with six legs at ΔT = 10 °C. This approach presents the potential for realizing printing-processable hybrid thermoelectric materials for application in flexible thermoelectric generators.
通过低温下的溶液相反应合成了聚(3,4-亚乙基二氧噻吩):聚(苯乙烯磺酸盐)(Te-Bi2Te3/PEDOT:PSS)涂覆的可溶液处理的碲化物基异质结构。水基合成得到了具有高塞贝克系数的 PEDOT:PSS 涂覆的 Te-Bi2Te3 纳米棒结构,可以在水中稳定分散。这些混合溶液通过喷涂方法沉积在基底上,以制备热电发电机。由于电导率的增加,Te-Bi2Te3/PEDOT:PSS 混合薄膜的热电性能通过简单的酸处理得到显著增强,并且可以根据处理的酸浓度有效地调节这些材料的功率因数。通过优化合成的 Te-Bi2Te3/PEDOT:PSS 杂化的酸处理,功率因数优化至 60.05 μW m(-1) K(-2),塞贝克系数为 93.63 μV K(-1),电导率为 69.99 S cm(-1)。通过喷涂 Te-Bi2Te3/PEDOT:PSS 混合溶液制造的柔性热电发电机在ΔT = 10°C 时具有 6 个腿的开路电压为 1.54 mV。这种方法为实现可用于柔性热电发电机的打印处理的混合热电材料提供了潜力。