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Study of Partially Transient Organic Epidermal Sensors

机译:部分瞬态有机表皮传感器的研究

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摘要

In this study, an all-organic, partially transient epidermal sensor with functional poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS) conjugated polymer printed onto a water-soluble polyethylene oxide (PEO) substrate is studied and presented. The sensor’s electronic properties were studied under static stress, dynamic load, and transient status. Electrode resistance remained approximately unchanged for up to 2% strain, and increased gradually within 6.5% strain under static stress. The electronic properties’ dependence on dynamic load showed a fast response time in the range of 0.05–3 Hz, and a reversible stretching threshold of 3% strain. A transiency study showed that the PEO substrate dissolved completely in water, while the PEDOT:PSS conjugated polymer electrode remained intact. The substrate-less, intrinsically soft PEDOT:PSS electrode formed perfect contact on human skin and stayed attached by Van der Waals force, and was demonstrated as a tattoolike epidermal sensor.
机译:在这项研究中,研究和提出了一种全有机的,部分瞬态的表皮传感器,该传感器将功能性的聚(3,4-乙撑二氧噻吩)聚苯乙烯磺酸盐(PEDOT:PSS)共轭聚合物印刷在水溶性聚环氧乙烷(PEO)基底上。在静态应力,动态负载和瞬态状态下研究了传感器的电子特性。在高达2%的应变下,电极电阻大致保持不变,并在静态应力下在6.5%的应变范围内逐渐增加。电子特性对动态负载的依赖性显示了在0.05–3 Hz范围内的快速响应时间,以及3%应变的可逆拉伸阈值。瞬态研究表明,PEO底物完全溶解在水中,而PEDOT:PSS共轭聚合物电极则保持完整。无底物,本质上柔软的PEDOT:PSS电极在人体皮肤上形成了完美的接触,并在范德华力的作用下保持附着状态,并被证明是一种纹身风格的表皮传感器。

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