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首页> 外文期刊>Applied Surface Science >A rationally designed flexible self-healing system with a high performance supercapacitor for powering an integrated multifunctional sensor
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A rationally designed flexible self-healing system with a high performance supercapacitor for powering an integrated multifunctional sensor

机译:合理设计的灵活自我修复系统,带有高性能超级电容器,可为集成多功能传感器供电

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We report on the fabrication of a rationally designed self-healing and flexible all-in-one system. Using a vacuum filtration method, an integrated system consisting of a planar supercapacitor and a multifunctional sensor is fabricated with gold nanosheet (AuNS) interconnections. A fast and reversible self-healing hydrogel based on the diol-ester bonding between poly(vinyl alcohol) (PVA) and borax is synthesized, and its mechanical stability is enhanced with the additional hydrogen bonding between PVA and agarose. Using an electrolyte of PVA/borax/agarose/NaNO3 and an electrode consisting of multiwalled carbon nanotubes (MWCNTs) coated on an AuNS current collector, a high-performance self-healing flexible planar supercapacitor is fabricated. The multi-functional sensor is made of MWCNTs with a zinc oxide nanowire composite. Both the supercapacitor and sensor recover their performance from bisectional damage via physical contact with a water supply. The self-healing supercapacitor shows mechanical stability for bending deformation even after repetitive self-healing cycles. Furthermore, the integrated system exhibits self-healing performance through stable sensing of NO2 gas and UV light using the stored energy in the supercapacitor after recovery from repetitive bisection of the sensor. This work demonstrates the high potential of our rationally designed flexible self-healing all-in-one system in high-performance wearable devices with high durability and longevity.
机译:我们报告了合理设计的自我修复和灵活的多合一系统的制造过程。使用真空过滤方法,通过金纳米片(AuNS)互连制造了一个由平面超级电容器和多功能传感器组成的集成系统。合成了一种基于聚乙烯醇(PVA)和硼砂之间的二醇酯键的快速可逆的自修复水凝胶,并通过PVA和琼脂糖之间的氢键增强了其机械稳定性。使用PVA /硼砂/琼脂糖/ NaNO3的电解质和由涂在AuNS集电器上的多壁碳纳米管(MWCNT)组成的电极,可以制造出高性能的自修复柔性平面超级电容器。多功能传感器由具有氧化锌纳米线复合材料的MWCNT制成。超级电容器和传感器都通过与供水系统的物理接触而从两部分损坏中恢复了性能。即使在重复的自愈循环之后,自愈超级电容器也表现出弯曲变形的机械稳定性。此外,从传感器的重复对分中恢复后,该集成系统通过使用超级电容器中存储的能量稳定地检测NO2气体和紫外线,从而展现出自修复性能。这项工作证明了我们合理设计的灵活自愈多合一系统在具有高耐用性和长寿命的高性能可穿戴设备中的巨大潜力。

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