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Mercerization to enhance flexibility and electromechanical stability of reduced graphene oxide cotton yarns

机译:丝光处理可增强氧化石墨烯棉纱线的柔韧性和机电稳定性

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Graphene-based textiles combining reduced graphene oxide (RGO) nanosheets and cotton textiles such as cotton yarns (CYs) and cotton fabrics show promise as multifunctional electronic textiles (e-textiles) that can be fabricated at reasonable cost by a simple solution process. However, realizing e-textiles with high flexibility and excellent mechanical stability is still challenging. Here, we report a facile strategy for the fabrication of highly flexible and electromechanically stable graphene yarns composed of RGO nanosheets and CYs. More specifically, the fully conformal wrapping of RGO sheets onto the surface of CYs is achieved by combination of conventional mercerization and simple dipping. We optimized the surface chemistry, morphology, and elasticity of the CYs as substrates by conventional mercerization. Using the obtained mercerized CYs, which had a more hydrated surface, round shape, smooth morphology, and good elasticity, we successfully fabricated high-quality graphene yams. We evaluated the electrical and electromechanical behavior of the RGO-coated mercerized cotton yarns for e-textile and wearable applications. They exhibited a good electrical conductivity of similar to 1.0 S/cm, which is approximately 1,000 times that of RGO-coated CYs without mercerization, and exceptional flexibility and electromechanical stability under 50,000 bending cycles with a maximum bending radius of 0.5 mm. We successfully demonstrated the potential application of our novel graphene yarns as wearable electronics with a fire/flame sensor. We believe that our process offers an easy approach to improve the flexibility and electromechanical reliability of two-dimensional nanomaterial-based cotton textiles such as fiber, yarn, and fabric than those that might be expected in advanced e-textiles and wearable devices.
机译:石墨烯基纺织品结合了还原的氧化石墨烯(RGO)纳米片和棉纺织品,例如棉纱(CYs)和棉织物,显示出作为多功能电子纺织品(e-textiles)的希望,该纺织品可以通过简单的解决方案以合理的成本制造。然而,实现具有高柔韧性和优异机械稳定性的电子织物仍然是挑战。在这里,我们报告了一种由RGO纳米片和CYs组成的高度柔性和机电稳定的石墨烯纱线制造的简便策略。更具体地说,通过常规的丝光处理和简单的浸涂相结合,就可以将RGO薄板完全保形地包裹在CY表面上。通过常规丝光处理,我们优化了作为底物的CY的表面化学,形态和弹性。使用获得的具有水化表面,圆形,形态光滑和弹性好的丝光化CY,我们成功地制造了高质量的石墨烯纱线。我们评估了用于电子纺织和可穿戴应用的RGO涂层丝光棉纱的电气和机电性能。它们显示出约1.0 S / cm的良好电导率,约为不带丝光的RGO涂层CY的1,000倍,在50,000次弯曲循环(最大弯曲半径为0.5 mm)下具有出色的柔韧性和机电稳定性。我们成功地展示了我们的新型石墨烯纱线作为具有火灾/火焰传感器的可穿戴电子产品的潜在应用。我们相信,与先进的电子纺织品和可穿戴设备相比,我们的工艺提供了一种简便的方法来提高二维纳米材料基棉纺织品(如纤维,纱线和织物)的柔韧性和机电可靠性。

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