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Mechanosensation-Active Matrix Based on Direct-Contact Tribotronic Planar Graphene Transistor Array

机译:基于直接触点的机械化 - 有源矩阵基于直接触点Tryronic平面石墨烯晶体管阵列

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摘要

Mechanosensitive electronics aims at replicating the multifunctions of human skin to realize quantitative conversion of external stimuli into electronic signals and provide corresponding feedback instructions. Here, we report a mechanosensation-active matrix based on a direct-contact tribotronic planar graphene transistor array. Ion gel is utilized as both the dielectric in the graphene transistor and the friction layer for triboelectric potential coupling to achieve highly efficient gating and sensation properties. Different contact distances between the ion gel and other friction materials produce different triboelectric potentials, which are directly coupled to the graphene channel and lead to different output signals through modulating the Fermi level of graphene. Based on this mechanism, the tribotronic graphene transistor is capable of sensing approaching distances, recognizing the category of different materials, and even distinguishing voices. It possesses excellent sensing properties, including high sensitivity (0.16 mm(-1)), fast response time (similar to 15 ms), and excellent durability (over 1000 cycles). Furthermore, the fabricated mechanosensation-active matrix is demonstrated to sense spatial contact distances and visualize a 2D color mapping of the target object. The tribotronic active matrix with ion gel as dielectric/friction layer provides a route for efficient and low-power-consuming mechanosensation in a noninvasive fashion. It is of great significance in multifunction sensory systems, wearable human-machine interactive interfaces, artificial electronic skin, and future telemedicine for patient surveillance.
机译:机械敏感的电子产品旨在复制人体皮肤的多隙,以实现外部刺激的定量转换为电子信号并提供相应的反馈指令。这里,我们基于直接触点微调平面石墨烯晶体管阵列报告机组源激活矩阵。离子凝胶作为石墨烯晶体管中的电介质和用于摩擦电位耦合的摩擦层,以实现高效的门控和感觉特性。离子凝胶和其他摩擦材料之间的不同的接触距离产生不同的摩擦电位,其直接耦合到石墨烯通道,并通过调节石墨烯的费米水平来导致不同的输出信号。基于该机制,TRESTRONIC石墨烯晶体管能够感测接近距离,识别不同材料的类别,甚至区分声音。它具有出色的感测性能,包括高灵敏度(0.16mm(-1)),快速响应时间(类似于15毫秒),以及出色的耐久性(超过1000个循环)。此外,说明制造的机械化 - 有源矩阵以感测空间接触距离并可视化目标对象的2D颜色映射。具有离子凝胶作为电介质/摩擦层的Tryronic Active矩阵提供了一种以非侵入方式提供高效和低功电机组机械的途径。对于多功能感官系统,可穿戴人机交互式界面,人造电子皮肤和未来远程医疗,具有重要意义,用于患者监测。

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