首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Ultrasensitive and highly repeatable pen ink decorated cuprammonium rayon (cupra) fabrics for multifunctional sensors
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Ultrasensitive and highly repeatable pen ink decorated cuprammonium rayon (cupra) fabrics for multifunctional sensors

机译:超敏且高度可重复的笔墨装饰为多功能传感器的Cuprammonium人造丝(Cupra)织物

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摘要

Electroconductive pen ink coated cuprammonium rayon (cupra) fabrics functioning as smart materials are prepared by decorating pen ink on the surface of the cupra fabrics (CFs) by applying a facile and simple dip-coating method. The microstructure of the resultant pen ink/cupra fabrics (PCFs) is investigated by field emission-scanning electron microscopy, Raman spectroscopy and X-ray diffraction measurements, respectively. It is found that the PCFs possess not only admirable tensile strength and thermal properties, but also adjustable volume resistivities in a wide range of 1.30-0.23 k cm by varying the pen ink loading. The multifunctional sensing behaviors of such novel PCFs towards stress-strain and liquid water were studied substantially. The reliable linear strain-dependent resistance void of hysteresis and high strain sensitivity render PCFs possible strain sensor candidates. In terms of liquid sensing, the PCFs exhibit a maximum relative electrical resistance change (R-rel) of about 18800% in liquid water without degradation of sensing performance during cycling. Therefore, the PCFs with ultrahigh sensitivity and prominent repeatability as strain/liquid sensors provide a cost-effective and efficient alternative in wearable electronics and sensing applications.
机译:通过施加容器和简单的浸涂方法,通过在Cupra织物(CFS)表面上装饰笔墨来制备用作智能材料的导电笔油墨(Cupra)织物的用作智能材料。通过场发射扫描电子显微镜,拉曼光谱和X射线衍射测量来研究所得笔墨/ Cupra织物(PCF)的微观结构。发现PCF不仅具有令人钦佩的抗拉强度和热性能,而且还通过改变笔油墨载荷而宽范围为1.30-0.23kcm的可调节体积电阻。基本上研究了这种新型PCFS对应力 - 应变和液态水的多功能感测行为。滞后和高应变敏感性的可靠性线性应变依赖性阻差使PCF可能的应变传感器候选。就液体感测而言,PCF在液态水中表现出约18800%的最大相对电阻变化(R-REL),而不会在循环期间劣化感测性能。因此,具有超高敏感性和突出可重复性的PCF,作为应变/液体传感器提供了可穿戴电子设备和传感应用的成本效益和有效的替代品。

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