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Ultra-Robust Flexible Electronics by Laser-Driven Polymer-Nanomaterials Integration

机译:激光驱动聚合物 - 纳米材料集成的超强柔韧的电子产品

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摘要

Polyethylene terephthalate (PET) is the most widely used polymer in the world. For the first time, the laser-driven integration of aluminum nanoparticles (Al NPs) into PET to realize a laser-induced graphene/Al NPs/polymer composite, which demonstrates excellent toughness and high electrical conductivity with the formation of aluminum carbide into the polymer is shown. The conductive structures show an impressive mechanical resistance against 10000 bending cycles, projectile impact, hammering, abrasion, and structural and chemical stability when in contact with different solvents (ethanol, water, and aqueous electrolytes). Devices including thermal heaters, carbon electrodes for energy storage, electrochemical and bending sensors show this technology's practical application for ultra-robust polymer electronics. This laser-based technology can be extended to integrating other nanomaterials and create hybrid graphene-based structures with excellent properties in a wide range of flexible electronics' applications.
机译:聚对苯二甲酸乙二醇酯(PET)是世界上最广泛使用的聚合物。首次,铝纳米粒子(Al NPS)的激光驱动的整合到PET以实现激光诱导的石墨烯/ Al NPS /聚合物复合材料,该复合材料具有优异的韧性和高导电性,在聚合物中形成碳化铝显示。导电结构表明,在与不同溶剂(乙醇,水和水电解质)接触时,导电结构令人印象深刻的机械电阻。10000弯曲循环,射弹冲击,锤击,磨损,结构和化学稳定性。包括热加热器,碳电极的装置,用于储能,电化学和弯曲传感器,表明了该技术的超强高分子电子产品的实际应用。这种基于激光的技术可以扩展到整合其他纳米材料,并在各种柔性电子应用中产生具有优异性能的混合石墨烯基结构。

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