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Stretchable and Skin-Conformable Conductors Based on Polyurethane/Laser-Induced Graphene

机译:基于聚氨酯/激光诱导的石墨烯的可拉伸和皮肤形状的导体

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The conversion of various polymer substrates into laserinduced graphene (LIG) with a CO2 laser in ambient condition is recently emerging as a simple method for obtaining patterned porous graphene conductors, with a myriad of applications in sensing, actuation, and energy. In this paper, a method is presented for embedding porous LIG (LIG-P) or LIG fibers (LIG-F) into a thin (about 50 mu m) and soft medical grade polyurethane (MPU) providing excellent conformal adhesion on skin, stretchability, and maximum breathability to boost the development of various unperceivable monitoring systems on skin. The effect of varying laser fluence and geometry of the laser scribing on the LIG micro-nanostructure morphology and on the electrical and electromechanical properties of LIG/ MPU composites is investigated. A peculiar and distinct behavior is observed for either LIG-P or LIG-F. Excellent stretchability without permanent impairment of conductive properties is revealed up to 100% strain and retained after hundreds of cycles of stretching tests. A distinct piezoresistive behavior, with an average gauge factor of 40, opens the way to various potential strain/ pressure sensing applications. A novel method based on laser scribing is then introduced for providing vertical interconnect access (VIA) into LIG/MPU conformable epidermal sensors. Such VIA enables stable connections to an external measurement device, as this represents a typical weakness of many epidermal devices so far. Three examples of minimally invasive LIG/MPU epidermal sensing proof of concepts are presented: as electrodes for electromyographic recording on limb and as piezoresistive sensors for touch and respiration detection on skin. Long-term wearability and functioning up to several days and under repeated stretching tests is demonstrated.
机译:最近将各种聚合物底物与CO2激光器转化为相环境状况的CO2激光器的转化为获得图案化多孔石墨烯导体的简单方法,其中有多种应用感测,致动和能量。本文提出了一种将多孔Lig(Lig-P)或Lig纤维(Lig-F)嵌入薄(约50μm)和软效级聚氨酯(MPU)中的方法,提供优异的皮肤,拉伸性以及提高皮肤上各种无法潜隐监测系统的发展的最大透气性。研究了激光划线的改变激光器流量和几何形状的影响,研究了LIG微纳米结构形态和LIG / MPU复合材料的电气和机电性能的研究。观察到一种斑块或Lig-F的特殊和不同的行为。具有永久性导电性能损害的优异拉伸性显露高达100%菌株,并在数百个拉伸试验后保留。具有平均规格因子为40的明显压阻性行为为各种潜在的潜在应变/压力感测应用程序开辟了道路。然后引入基于激光划线的新方法,用于将垂直互连访问(通孔)提供给Lig / MPU适形表皮传感器。这样的常态可以实现与外部测量装置的稳定连接,因为这代表了到目前为止许多表皮器件的典型弱点。提出了三种微创Lig / MPU表皮感测概念的示例:作为肢体肌电图记录的电极,并且作为皮肤上的触摸和呼吸检测的压阻传感器。证实了长期耐用性和功耗高达几天,并在重复的拉伸试验下进行。

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