Ju Beom-Jun, Oh Ji-Hyun, Yun Changsang, Park Chung Hee
Department of Textiles, Merchandising and Fashion Design, Seoul National University Seoul 08826 Republic of Korea
Department of Fashion Industry, Ewha Womans University Seoul 03760 Republic of Korea.
RSC Adv. 2018 Aug 14;8(50):28825-28835. doi: 10.1039/c8ra04652b. eCollection 2018 Aug 7.
Smart textiles have been enormously developed recently, but attachment of batteries and low washing resistance are the major challenges in the development of wearable smart textiles. However, piezoelectric materials harvesting energy from mechanical action can be readily integrated with smart textiles and can replace conventional batteries. Therefore, energy harvesters with poly(vinylidene fluoride) (PVDF) were fabricated by the electrospinning process. In addition, simple CF plasma etching followed by water immersion of the electrospun PVDF webs resulted in superhydrophobicity, with a water contact angle of 169.8 ± 1.5°, a water shedding angle of 4.7 ± 1.8°, and self-cleaning properties. This would decrease the number of washing cycles during use and increase the durability of the smart textile. X-ray photoelectron spectroscopy indicated that metals were co-deposited as etch-resisting masks to fabricate a nanostructure during plasma etching and were removed by water immersion. The piezoelectric performance of the superhydrophobic electrospun PVDF web showed a higher peak-to-peak output voltage of 3.50 V than the untreated electrospun PVDF web (2.86 V). Furthermore, the breathability of the superhydrophobic PVDF web was remarkably higher than those of the PVDF film. Therefore, the new flexible electrospun PVDF web with superhydrophobicity and piezoelectricity has significant potential as energy harvesters in wearable smart textiles.
智能纺织品近年来得到了极大的发展,但电池的附着和耐洗涤性差是可穿戴智能纺织品发展中的主要挑战。然而,能从机械作用中收集能量的压电材料可以很容易地与智能纺织品集成,并能取代传统电池。因此,通过静电纺丝工艺制备了含聚偏氟乙烯(PVDF)的能量收集器。此外,对静电纺丝的PVDF纤维网进行简单的CF等离子体蚀刻,然后水浸处理,可使其具有超疏水性,水接触角为169.8±1.5°,水滴滑落角为4.7±1.8°,并具有自清洁性能。这将减少使用过程中的洗涤次数,提高智能纺织品的耐用性。X射线光电子能谱表明,金属在等离子体蚀刻过程中作为抗蚀刻掩膜共沉积以制造纳米结构,并通过水浸去除。超疏水静电纺丝PVDF纤维网的压电性能显示出比未处理的静电纺丝PVDF纤维网(2.86 V)更高的峰峰值输出电压3.50 V。此外,超疏水PVDF纤维网的透气性明显高于PVDF薄膜。因此,这种具有超疏水性和压电性的新型柔性静电纺丝PVDF纤维网作为可穿戴智能纺织品中的能量收集器具有巨大潜力。