Zhang Zhi, Gong Wenzheng, Bai Zhiqing, Wang Dongfang, Xu Yiyang, Li Zhutong, Guo Jiansheng, Turng Lih-Sheng
Key Laboratory of Textile Science and Technology, Ministry of Education , College of Textiles Donghua University , Shanghai 201620 , China.
Wisconsin Institute for Discovery , University of Wisconsin-Madison , Madison , Wisconsin 53715 , United States.
ACS Nano. 2019 Nov 26;13(11):12787-12797. doi: 10.1021/acsnano.9b04911. Epub 2019 Oct 30.
Triboelectric nanogenerators (TENGs) are a potential solution to the depleted state of fossil fuels, on the condition that the energy conversion efficiency can be further improved. Tribomaterials are important not only for improving the output performance of TENGs but also for extending their applications. In this work, a poly-ε-caprolactone (PCL) electrospun membrane is proposed as a highly effective positive tribomaterial, paired with an expanded polytetrafluoroethylene (ePTFE) membrane, to fabricate TENGs (PCL/ePTFE TENGs). Compared with a widely used polyamide-6 (PA6)/ePTFE TENG, the output performance of the PCL/ePTFE TENG is enhanced by about 28%, indicating that PCL possesses a stronger electron-donating ability owing to the existence of oxygen-containing functional groups as electron donors. Furthermore, the PCL membrane is modified using poly(ethylene glycol) methyl ether (mPEG), which possesses more O atoms, by electrospinning (ES) and dip coating (DC). The results reveal that mPEG is very effective at improving the positive electron polarity of PCL. With the increase of mPEG content, the output performance increases by more than 40%, yielding a maximum power density of 115.83 W·m. More polymers have been compared to confirm that many oxygen-rich polymers show excellent electron-donating abilities and act as highly efficient positive tribomaterials. This work also provides additional options for more effective positive tribomaterials.
摩擦纳米发电机(TENGs)是解决化石燃料枯竭问题的一种潜在方案,前提是其能量转换效率能够进一步提高。摩擦材料不仅对于提高TENGs的输出性能很重要,而且对于扩展其应用也很重要。在这项工作中,提出了一种聚ε-己内酯(PCL)电纺膜作为一种高效的正摩擦材料,与膨体聚四氟乙烯(ePTFE)膜配对,以制造TENGs(PCL/ePTFE TENGs)。与广泛使用的聚酰胺-6(PA6)/ePTFE TENG相比,PCL/ePTFE TENG的输出性能提高了约28%,这表明由于存在作为电子供体的含氧官能团,PCL具有更强的给电子能力。此外,通过静电纺丝(ES)和浸涂(DC),使用具有更多O原子的聚(乙二醇)甲醚(mPEG)对PCL膜进行改性。结果表明,mPEG在提高PCL的正电子极性方面非常有效。随着mPEG含量的增加,输出性能提高了40%以上,产生的最大功率密度为115.83 W·m。已对更多聚合物进行了比较,以确认许多富氧聚合物具有优异的给电子能力,并可作为高效的正摩擦材料。这项工作还为更有效的正摩擦材料提供了更多选择。