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Amphiphobic triboelectric nanogenerators based on silica enhanced thermoplastic polymeric nanofiber membranes

机译:Amphiphobic摩擦电王中林教授基于石英增强的热塑性聚合物纳米纤维膜

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摘要

It is necessary to construct an amphiphobic triboelectric nanogenerator (TENG) since water, oil and other antistatic agents will have a great impact on its electrical output performance during practical applications. Herein, we put forward a high-performance TENG based on silica enhanced thermoplastic polymeric nanofiber membranes that possess outstanding droplet-repellency after being modified with fluorine-containing polymers. With in situ polycondensation of SiO2 nanoparticles on the surface of the raw materials of garment-thermoplastic nanofiber membranes fabricated by the melt-blending extrusion method, the electrical output performance of the prepared TENGs enhanced a lot, corresponding to an excellent peak power density of 2.14 W m(-2) that was enough to supply several green LEDs. For improving its ability to resist moisture and antistatic agents existing in daily life, FAS/PTFE was dip-coated on the above modified membranes to achieve remarkable amphiphobicity that gave it another ability for self-cleaning. Considering the good stability of amphiphobicity and the excellent compatibility between the thermoplastic polymeric nanofiber membranes and garment, the developed TENG is believed to be the most suitable candidate for powering wearable electronics in the near future.
机译:有必要建立一个amphiphobic摩擦电王中林教授(邓)由于水,石油和其它防静电剂将有一个伟大的对其电输出性能的影响在实际的应用程序。提出基于硅高性能腾增强的热塑性聚合物纳米纤维膜,具有杰出的droplet-repellency后修改含氟聚合物。缩聚的二氧化硅纳米粒子表面的原材料garment-thermoplastic纳米纤维膜捏造的melt-blending挤压方法,的电输出性能腾增强很多,对应于一个优秀的峰值功率密度为2.14 W m (2)就足以供应几个绿色发光二极管。提高其抵抗水分的能力抗静电剂存在于日常生活中,FAS /聚四氟乙烯浸渍涂布在上述修改实现显著amphiphobicity膜这给了另一个自洁能力。考虑amphiphobicity的稳定性好和之间的良好的兼容性热塑性聚合物纳米纤维膜服装、发达腾被认为是最合适的候选人为可穿戴电子产品在不久的将来。

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