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A Study on The Seebeck Effect of 3,4,9,10-Perylenetetracarboxylic dianhydride (PTCDA) as a Novel N-type Material in a Thermoelectric Device

机译:3,4,9,10-二萜类二酐二酐(PTCDA)作为热电装置中的新型N型材料的塞贝克效应研究

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The studies on the thermoelectric (TE) properties of 3,4,9,10-Perylenetetracarboxylic dianhydride (PTCDA) and a conducting polymer Poly(ethylenedioxythiopene): poly (styrenesulfonate) (PEDOT: PSS)-PH1000 are presented. PTCDA and PEDOT: PSS have been used as a potential n-type material and a p-type material for the TE device, respectively. The Seebeck coefficients, open circuit voltage and the output power have been obtained for the fabricated TE device. The Seebeck effect was observed on this TE device where the output power in the range of 1 nW/cm~2 to 5 nW/cm~2, was successfully deduced from this TE device. It was found that the association of PEDOT: PSS and PTCDA have been acting well in this TE device. However, a higher TE performance, in the future could be developed, by applying a thermal treatment and introducing a suitable dopant to this n-type material which may increase the mobility of the electrons and the Seebeck coefficient.
机译:提出了对3,4,9,10-前丙二羧酸二酐(PTCDA)和导电聚合物聚(乙二胺)的热电(TE)性质的研究:呈现聚(苯乙烯磺酸盐)(PEDOT:PSS)-ph1000。 PTCDA和PEDOT:PSS已被用作潜在的N型材料和TE器件的P型材料。 已经为制造的TE器件获得了塞贝克系数,开路电压和输出功率。 在该TE装置上观察到塞贝克效应,其中从该TE装置成功推断出1nW / cm〜2至5 nW / cm〜2的输出功率。 发现PEDOT的协会:PSS和PTCDA在该TE装置中一直在作用。 然而,通过施加热处理并将合适的掺杂剂施加到这种n型材料,可以开发更高的TE性能,这可以通过增加电子和塞贝克系数的迁移率。

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