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Electrical and mechanical self-healing membrane using gold nanoparticles as localized 'nano-heaters'

机译:机电自修复膜,使用金纳米颗粒作为局部“纳米加热器”

摘要

Healable, electrically conductive membranes are essential for the fabrication of reliable electronic devices to reduce their replacement and maintenance costs. Here, we report the fabrication of a tri-layered, light-triggered healable and highly electrically conductive membrane by depositing reduced graphene oxide (rGO) and silver nanowires (Ag NWs) onto an electrospun fibrous composite of gold nanoparticle (Au NP) incorporated polycaprolactone (PCL). The obtained fibrous membrane (FM), denoted as Au@PCLx/rGO/Ag, has a highly conductive surface with sheet resistance as low as 11.5 Ω sq-1, and shows very good flexibility to repeated bending cycles. Under 532 nm light irradiation, selective self-healing is achieved in the FM via local heating generated by Au NPs. The FM is capable of healing both structural and electrical properties for multiple times without apparent loss of surface conductivity. This photothermal-responsive healable conductor may become a potential element for healable and intelligent optoelectronic devices.
机译:可修复的导电膜对于制造可靠的电子设备以减少其更换和维护成本至关重要。在这里,我们报告了通过将还原的氧化石墨烯(rGO)和银纳米线(Ag NWs)沉积到掺有聚己内酯的金纳米粒子(Au NP)的电纺纤维复合材料上来制造三层,光触发的可修复且高度导电的膜的方法(PCL)。得到的纤维膜(FM),表示为Au @ PCLx / rGO / Ag,具有高导电性表面,薄层电阻低至11.5Ωsq-1,并且对于重复的弯曲循环显示出非常好的柔韧性。在532 nm的光照射下,通过金纳米颗粒产生的局部加热,在FM中实现了选择性的自我修复。 FM能够多次修复结构和电气特性,而不会明显降低表面电导率。这种对光热敏感的可修复导体可能会成为可修复智能智能光电设备的潜在元件。

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