Castillo-López Dulce Natalia, Gómez-Pavón Luz Del Carmen, Gutíerrez-Nava Alfredo, Zaca-Morán Placido, Arriaga-Arriaga Cesar Augusto, Muñoz-Pacheco Jesús Manuel, Luis-Ramos Arnulfo
Grupo de Sistemas Fotónicos y Nanoóptica, Facultad de Ciencias de la Electrónica, Benemérita Universidad Autónoma de Puebla, Puebla 72570, Mexico.
Instituto de Ciencias, Ecocampus Valsequillo, Benemérita Universidad Autónoma de Puebla, Puebla 72960, Mexico.
Sensors (Basel). 2024 Apr 28;24(9):2819. doi: 10.3390/s24092819.
Nanocomposites are materials of special interest for the development of flexible electronic, optical, and mechanical devices in applications such as transparent conductive electrodes and flexible electronic sensors. These materials take advantage of the electrical, chemical, and mechanical properties of a polymeric matrix, especially in force sensors, as well as the properties of a conductive filler such as silver nanowires (AgNWs). In this work, the fabrication of a force sensor using AgNWs synthesized via the polyol chemical technique is presented. The nanowires were deposited via drop-casting in polyvinyl alcohol (PVA) to form the active (electrode) and resistive (nanocomposite) sensor films, with both films separated by a cellulose acetate substrate. The dimensions of the resulting sensor are 35 mm × 40 mm × 0.1 mm. The sensor shows an applied force ranging from 0 to 3.92 N, with a sensitivity of 0.039 N. The sensor stand-off resistance, exceeding 50 MΩ, indicates a good ability to detect changes in applied force without an external force. Additionally, studies revealed a response time of 10 ms, stabilization of 9 s, and a degree of hysteresis of 1.9%. The voltage response of the sensor under flexion at an angle of 85° was measured, demonstrating its functionality over a prolonged period. The fabricated sensor can be used in applications that require measuring pressure on irregular surfaces or systems with limited space, such as for estimating movement in robot joints.
纳米复合材料是一类特别受关注的材料,可用于开发柔性电子、光学和机械设备,应用于透明导电电极和柔性电子传感器等领域。这些材料利用了聚合物基体的电学、化学和机械性能,特别是在力传感器中,以及导电填料(如银纳米线(AgNWs))的性能。在这项工作中,展示了使用通过多元醇化学技术合成的AgNWs制造力传感器的过程。通过滴铸法将纳米线沉积在聚乙烯醇(PVA)中,形成有源(电极)和电阻(纳米复合材料)传感膜,两层膜由醋酸纤维素基板隔开。所得传感器的尺寸为35毫米×40毫米×0.1毫米。该传感器的施加力范围为0至3.92牛,灵敏度为0.039牛。传感器的偏置电阻超过50兆欧,表明在无外力作用下检测施加力变化的能力良好。此外,研究显示响应时间为10毫秒,稳定时间为9秒,滞后程度为1.9%。测量了传感器在85°弯曲角度下的电压响应,证明了其在长时间内的功能。制造的传感器可用于需要测量不规则表面或空间有限系统上压力的应用,例如估计机器人关节的运动。