Polymer Science and Technology Research Laboratory, Department of Chemistry, National Institute of Technology Calicut, Calicut, Kerala 673601, India.
Nanomaterials and Devices Research Laboratory, School of Materials Science and Engineering, National Institute of Technology Calicut, Calicut, Kerala 673601, India.
ACS Appl Mater Interfaces. 2021 May 26;13(20):24106-24116. doi: 10.1021/acsami.1c02674. Epub 2021 May 11.
Piezoelectric materials have gained interest among materials scientists as body motion sensors and energy harvesters on account of their fast responsiveness and substantial output signals. In this work, piezoelectric polymer mats have been fabricated from ethylene--vinyl acetate-millable polyurethane/nanohydroxyapatite (EVA-MPU/nHA) composite systems by employing the electrospinning technique. The ferro-piezoelectric features of the samples were confirmed from the butterfly loops of electrostatic force microscopy (EFM) amplitude signals as well as through the hysteresis curves of the EFM phase recorded with the assistance of dynamic-contact EFM. Piezoelectric responses of the samples to random finger tapping were evaluated after fabricating a simple device prototype connected to an oscilloscope. The efficacy of the mats to generate a voltage in response to activities such as mechanical bending, movement of throat muscles while drinking, movement of elbow joints, air blowing, and so forth has also been investigated. The results suggest the promising possibility of fabricating user-friendly piezoelectric mats out of the EVA-MPU/nHA system for physiological motion-sensing applications.
压电材料因其快速响应和大量输出信号而引起材料科学家的关注,可用作人体运动传感器和能量收集器。在这项工作中,通过静电纺丝技术从乙烯-醋酸乙烯酯可加工型聚氨酯/纳米羟基磷灰石(EVA-MPU/nHA)复合体系制备了压电聚合物垫。通过静电力显微镜(EFM)振幅信号的蝴蝶环以及在动态接触 EFM 的帮助下记录的 EFM 相位滞后曲线,证实了样品的铁电-压电特性。在连接到示波器的简单设备原型上制造之后,评估了样品对随机手指轻敲的压电响应。还研究了垫子对机械弯曲、喝水时喉咙肌肉运动、肘关节运动、吹气等活动产生电压的效果。结果表明,EVA-MPU/nHA 体系有望用于制造用户友好型压电垫,用于生理运动感应应用。