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Fabrication of an imperceptible liquid metal electrode for triboelectric nanogenerator based on gallium alloys by contact printing

机译:用接触印刷基于镓合金制备摩擦纳米料摩擦纳米液的制造

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摘要

A simple method for fabricating a liquid metal (LM) pattern on a polydimethylsiloxane substrate through the process of contact printing is introduced in this paper. This material is easily oxidized when it is exposed to air; consequently, it is difficult to manipulate. Contact printing is a fabrication process based on an adhesive force between interfaces. Adhesion is enhanced by forming a new oxide layer; thus, the LM film on a flat mold is transferred to another mold by contact printing. Electrical conductivity of the transferred LM is 1.93 x 10(6)S/m, which is sufficiently high for its usage as an electrode in electric circuits. The resolution of the LM pattern can be controlled at similar to 20 mu m and a complex pattern can be fabricated. Furthermore, the LM is semi-transparent and it is visually imperceptible when observed from a distance. Using the semi-transparent LM electrode, a LM tribo-electric nanogenerator is fabricated. The device demonstrates normal performance as an energy harvesting system; consequently, the LM patterned by contact printing can be applied to wearable self-powered electronics.
机译:本文介绍了一种通过接触印刷过程制造在聚二甲基硅氧烷基材上的液态金属(LM)图案的简单方法。当它暴露于空气时,这种材料很容易氧化;因此,难以操纵。接触印刷是基于界面之间的粘合力的制造过程。通过形成新的氧化物层来增强粘合力;因此,通过接触印刷将平面模具上的LM膜转移到另一个模具。转移的LM的电导率为1.93×10(6)S / m,其用作电路中的电极足够高。可以控制LM图案的分辨率,类似于20μm,可以制造复杂的图案。此外,LM是半透明的,并且在从距离观察时它在视觉上是不可察觉的。使用半透明LM电极,制造LM摩擦电纳米电极。该器件展示了作为能量收集系统的正常性能;因此,通过接触打印图案化的LM可以应用于可穿戴的自动电子设备。

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