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All-Graphene-Based Highly Flexible Noncontact Electronic Skin

机译:基于全石墨烯的高度灵活的非联系电子皮肤

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Noncontact electronic skin (e-skin), which possesses superior long-range and high-spatial-resolution sensory properties, is becoming indispensable in fulfilling the emulation of human sensation via prosthetics. Here, we present an advanced design and fabrication of all-graphene-based highly flexible noncontact e-skins by virtue of femtosecond laser direct writing (FsLDW). The photoreduced graphene oxide patterns function as the conductive electrodes, whereas the pristine graphene oxide thin film serves as the sensing layer. The as fabricated e-skins exhibit high sensitivity, fast response-recovery behavior, good long-term stability, and excellent mechanical robustness. In-depth analysis reveals that the sensing mechanism is attributed to proton and ionic conductivity in the low and high humidity conditions, respectively. By taking the merits of the FsLDW, a 4 x 4 sensing matrix is facilely integrated in a single-step, eco-friendly, and green process. The light-weight and in plane matrix shows high-spatial-resolution sensing capabilities over a long detection range in a noncontact mode. This study will open up an avenue to innovations in the noncontact e-skins and hold a promise for applications in wearable human-machine interfaces, robotics, and bioelectronics.
机译:具有优异的远程和高空间分辨率感官特性的非接触式电子皮肤(E-SINK)正在变得不可或缺于通过假肢实现人类感觉的仿真。在这里,我们通过Femtosecond激光直接写入(FSLDW)提出了一种先进的基于石墨烯的高度灵活的非联系E-Skins的制造。光射的石墨烯氧化物图案用作导电电极,而原始的石墨烯氧化物薄膜用作感测层。作为制造的电子皮肤表现出高灵敏度,快速响应恢复行为,良好的长期稳定性,以及出色的机械稳健性。深入分析表明,传感机制分别归因于低湿度条件下的质子和离子电导率。通过采取FSLDW的优点,4×4感测矩阵在单步,环保和绿色过程中易于集成。轻量级和平面矩阵在非接触模式下,在长检测范围内显示出高空间分辨率的感测能力。本研究将向非联系电子皮革中的非联系E-Skins的创新开辟一个途径,并在可穿戴人机界面,机器人和生物电体中的应用程序保持承诺。

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