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Facile Method and Novel Dielectric Material Using a Nanoparticle-Doped Thermoplastic Elastomer Composite Fabric for Triboelectric Nanogenerator Applications

机译:用于跨电纳米料料应用应用纳米颗粒掺杂热塑性弹性体复合织物的容易方法和新型介电材料

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摘要

The trends toward flexible and wearable electronic devices give rise to the attention of triboelectric nanogenerators (TENGs) which can gather tiny energy from human body motions. However, to accommodate the needs, wearable electronics are still facing challenges for choosing a better dielectric material to improve their performance and practicability. As a kind of synthetic rubber, the thermoplastic elastomer (TPE) contains many advantages such as lightweight, good flexibility, high tear strength, and friction resistance, accompanied by good adhesion with fabrics, which is an optimal candidate of dielectric materials. Herein, a novel nanoparticle (NP)-doped TPE composite fabric-based TENG (TF-TENG) has been developed, which operates based on the NP-doped TPE composite fabric using a facile coating method. The performances of the TENG device are systematically investigated under various thicknesses of TPE films, NP kinds, and doping mass. After being composited with a Cu NP-doped TPE film, the TPE composite fabric exhibited superior elastic behavior and good bending property, along with excellent flexibility. Moreover, a maximum output voltage of 470 V, a current of 24 mu A, and a power of 12 mW under 3 M Omega can be achieved by applying a force of 60 N on the TF-TENG. More importantly, the TF-TENG can be successfully used to harvest biomechanical energy from human body and provides much more comfort. In general, the TF-TENG has great application prospects in sustainable wearable devices owing to its lightweight, flexibility, and high mechanical properties.
机译:柔性和可穿戴电子设备的趋势引起了摩擦电纳米能器(Tengs)的注意力,可以从人体运动中聚集微小的能量。然而,为了满足需求,可穿戴电子设备仍面临选择更好的介电材料以改善其性能和实用性的挑战。作为一种合成橡胶,热塑性弹性体(TPE)含有许多优点,如轻质,良好的柔韧性,高撕裂强度和摩擦阻力,伴随着与织物的良好粘附,这是介电材料的最佳候选者。在此,已经开发出一种新型纳米颗粒(NP) - 掺杂的TPE复合织物的滕(TF-TENG),其使用易于涂布方法基于NP掺杂TPE复合织物。在各种厚度的TPE薄膜,NP种类和掺杂物质下系统地研究了滕装置的性能。在用Cu NP掺杂TPE膜进行组合后,TPE复合织物表现出优异的弹性行为和良好的弯曲性能,以及优异的柔韧性。此外,通过在TF-Teng上施加60n的力,可以实现最大输出电压,电流为470V,电流为24μma,电流为3mω的电源。更重要的是,TF-Teng可以成功地用于从人体收获生物力学能量,并提供更舒适的舒适性。一般而言,由于其轻量级,灵活性和高机械性能,TF-Teng在可持续的可穿戴设备中具有很大的应用前景。

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