Department of Electrical Engineering, Indian Institute of Technology Hyderabad Hyderabad, 502285, India.
ACS Appl Bio Mater. 2021 Jan 18;4(1):14-23. doi: 10.1021/acsabm.0c01399. Epub 2020 Dec 16.
Flexible nanofiber-based composites have been widely explored because of their light weight, high surface area, scalability, and tunable physical and mechanical properties. In this work, we report electrospun 2D-BiS incorporated PVDF/PPy nanofibers as a versatile platform for ultrasensitive pressure, strain, and temperature sensing. Detailed characterization studies revealed the formation of ultrathin nanofibers and characteristic Raman and IR vibration modes of PPy, 2D-BiS, β-phased PVDF. The fabricated pressure sensor exhibited a sensitivity of 1.51 kPa in the wide linear range of 1-50 kPa and a response time of 0.04 s. The practical ability of pressure sensor was tested by successfully detecting pulse rate of human radial arteries. Further, the BS- PVDF/PPy composite was employed as a strain sensor in the range of 3.1-61.5%, displayed a gauge factor (GF) of 45.45 and a response time of 0.1 s. The wearable sensor was capable of detecting minute changes in hand gestures by recognizing the microstrains applied to the device. The sensing mechanism can be attributed to the excellent piezoelectric property of β- phase PVDF, electron transport property of PPy nanoparticles and tensile strength of the BS nanoparticles embedded in the polymer matrix. When used as a wearable temperature sensor, the versatile device demonstrated a linear range of detection 24- 48 °C with a response time of 0.33 s and Temperature coefficient of resistance (TCR) of -0.1117 °C that can be attributed to the phonon-assisted hoping mechanism. The nanofiber composite dissolved in volatile organic solvent acetone in 5 days with the least impact on the surrounding environment thus making this a promising strategy to develop transient technologies aimed at zero-waste, green electronics.
基于柔性纳米纤维的复合材料因其重量轻、比表面积大、可扩展性以及可调节的物理和机械性能而得到广泛研究。在这项工作中,我们报告了静电纺丝 2D-BiS 掺入的 PVDF/PPy 纳米纤维,作为超灵敏压力、应变和温度传感的多功能平台。详细的特征研究表明形成了超薄纳米纤维以及 PPy、2D-BiS、β 相 PVDF 的特征拉曼和红外振动模式。所制造的压力传感器在 1-50 kPa 的宽线性范围内表现出 1.51 kPa 的灵敏度和 0.04 s 的响应时间。通过成功检测人体桡动脉的脉搏率,测试了压力传感器的实际能力。此外,BS-PVDF/PPy 复合材料在 3.1-61.5%的范围内用作应变传感器,显示出 45.45 的应变系数 (GF) 和 0.1 s 的响应时间。可穿戴传感器能够通过识别施加到设备的微应变来检测手部手势的微小变化。传感机制可归因于β相 PVDF 的优异压电性能、PPy 纳米粒子的电子传输性能以及嵌入聚合物基质中的 BS 纳米粒子的拉伸强度。当用作可穿戴温度传感器时,该多功能器件在 24-48°C 的检测范围内表现出线性范围,响应时间为 0.33 s,电阻温度系数 (TCR) 为-0.1117°C,这可归因于声子辅助跳跃机制。纳米纤维复合材料在 5 天内在挥发性有机溶剂丙酮中溶解,对周围环境的影响最小,因此这是开发旨在实现零废物、绿色电子的瞬态技术的有前途的策略。