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Effect of polymer hygroscopicity on the performance of electrospun tirboelectric nanogenerators

机译:聚合物的吸湿性对电纺涡流纳米发电机性能的影响

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Triboelectric nanogenerator (TEG) as a novel energy harvester has received a great attention since 2011, although the influence of hygroscopicity of triboelectric materials is still lacking. In this paper, we have focused on the effect of hygroscopicity on the output power from the TEG. It was found that under the same mechanical excitation, the output power of the TEG fabricated with hygroscopic polymers (HTEG, represented by PA6) were more vulnerable to the environment humidity compared with TEG fabricated with nonhygroscopic polymers (NTEG, represented by PHBV). The output power of HTEG decreased by 93.3% while the environment humidity increased from 20% to 80%. However, the output power of NTEG only decreased by 14.6% under the same environment humidity changes. This study can contribute not only to the materials selection on designing triboelectric devices to operate in varying environments and extreme conditions, but also to the fundamental understanding of the mechanism of triboelectric effect.
机译:自2011年以来,摩擦电纳米发电机(TEG)作为一种新型的能量收集器就受到了广泛的关注,尽管仍然缺乏摩擦电材料的吸湿性的影响。在本文中,我们集中研究了吸湿性对TEG输出功率的影响。发现在相同的机械激励下,与使用非吸湿聚合物(NTPH,以PHBV为代表)制造的TEG相比,使用吸湿聚合物(HTEG,以PA6为代表)制造的TEG的输出功率更容易受到环境湿度的影响。 HTEG的输出功率下降了93.3%,而环境湿度从20%增加到80%。然而,在相同的环境湿度变化下,NTEG的输出功率仅降低了14.6%。这项研究不仅有助于设计在各种环境和极端条件下工作的摩擦电器件的材料选择,而且有助于对摩擦电效应机理的基本理解。

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