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首页> 外文期刊>The journal of physics and chemistry of solids >Enhanced output power from triboelectric nanogenerators based on electrospun Eu-doped polyvinylidene fluoride nanofibers
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Enhanced output power from triboelectric nanogenerators based on electrospun Eu-doped polyvinylidene fluoride nanofibers

机译:基于EXTREVOUN EU掺杂聚偏二氟乙烯纳米纤维的摩擦纳米晶体增强输出功率

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摘要

In this study, Eu-doped polyvinylidene fluoride nanofibers (PVDF NFs) were fabricated by an electrospinning method and applied as an active layer in triboelectric nanogenerators (TENGs). Structural and optical investigations showed that Eu3+ was successfully doped in the PVDF NFs and it induced discrete emissions corresponding to the electronic transitions. As the Eu content increased, the phase transformation was enhanced from the alpha-phase to the beta-phase in the PVDF NFs, and their diameter decreased. These changes enhanced the electrical output power of the TENGs. However, the further addition of Eu resulted in precipitation of the NO3--related complex on the surface of the PVDF NFs, which was detrimental to performance of the TENGs. Due to these conflicting effects, the output power increased from 13 to 26 mu W/cm(2) as the Eu contents increased from 0 to 2.7 wt%, whereas it decreased drastically to 4.9 mu W/cm(2) when the Eu content increased further to 5.3 wt%. Therefore, the optimum amount of Eu doping has advantageous effects.
机译:在该研究中,通过静电纺丝方法制造欧掺杂的聚偏二氟乙烯纳米纤维(PVDF NFS)并施加为摩擦纳米液(TENGS)中的活性层。结构和光学研究表明,Eu3 +在PVDF NFS中成功掺杂,并且它诱导与电子转换相对应的离散排放。随着欧盟含量的增加,将相变从PVDF NF中的α相增强到β-相中,它们的直径降低。这些变化增强了Tengs的电输出功率。然而,欧盟的进一步添加导致PVDF NFS表面上的NO3相关复合物沉淀,这对Tengs的性能有害。由于这些矛盾的效果,输出功率从13到26 mu w / cm(2)增加,因为欧盟内容增加到2.7wt%,而当欧盟含量时,它在4.9μW/ cm(2)中急剧下降到4.9μm进一步增加到5.3重量%。因此,欧盟掺杂的最佳量具有有益的效果。

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