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A wearable and highly sensitive pressure sensor with ultrathin gold nanowires

机译:具有超薄金纳米线的可穿戴且高度灵敏的压力传感器

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Ultrathin gold nanowires are mechanically flexible yet robust, which are novel building blocks with potential applications in future wearable optoelectronic devices. Here we report an efficient, low-cost fabrication strategy to construct a highly sensitive, flexible pressure sensor by sandwiching ultrathin gold nanowire-impregnated tissue paper between two thin polydimethylsiloxane sheets. The entire device fabrication process is scalable, enabling facile large-area integration and patterning for mapping spatial pressure distribution. Our gold nanowires-based pressure sensors can be operated at a battery voltage of 1.5?V with low energy consumption ( 1.14?kPa?1) and high stability (>50,000 loading–unloading cycles). In addition, our sensor can resolve pressing, bending, torsional forces and acoustic vibrations. The superior sensing properties in conjunction with mechanical flexibility and robustness enabled real-time monitoring of blood pulses as well as detection of small vibration forces from music.
机译:超薄金纳米线具有机械柔韧性且坚固耐用,是新颖的构建基块,在未来可穿戴光电设备中具有潜在的应用前景。在这里,我们报告了一种高效,低成本的制造策略,通过将超薄金纳米线浸渍的薄页纸夹在两个薄的聚二甲基硅氧烷薄板之间来构建高度灵敏,灵活的压力传感器。整个设备制造过程都是可扩展的,从而可以轻松进行大面积集成和构图,以绘制空间压力分布。我们基于金纳米线的压力传感器可以在1.5?V的电池电压下运行,具有低能耗(1.14?kPa ?1 )和高稳定性(> 50,000个装卸周期)的特点。此外,我们的传感器可以解决压力,弯曲,扭转力和声振动。出色的感测特性与机械灵活性和坚固性相结合,可以实时监测脉搏以及检测音乐中的微小振动力。

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