Department of Mechanical Engineering , University of Bath , Bath BA2 7AY , U.K.
Institute of Nano Science and Technology (INST) , Phase-10, Sector-64 , Mohali 160062 , India.
ACS Appl Mater Interfaces. 2019 Jul 31;11(30):27279-27287. doi: 10.1021/acsami.9b04812. Epub 2019 Jul 16.
This work introduces a piezoelectric-pyroelectric nanogenerator (P-PNG) based on methylammonium lead iodide (CHNHPbI) incorporated electrospun poly(vinylidene fluoride) (PVDF) nanofibers that are able to harvest mechanical and thermal energies. During the application of a periodic compressive contact force at a frequency of 4 Hz, an output voltage of ∼220 mV is generated. The P-PNG has a piezoelectric coefficient () of ∼19.7 pC/N coupled with a high durability (60 000 cycles) and quick response time (∼1 ms). The maximum generated output power density (∼0.8 mW/m) is sufficient to charge up a variety of capacitors, with the potential to replace an external power supply to drive portable devices. In addition, upon exposure to cyclic heating and cooling at a temperature of 38 K, a pyroelectric output current of 18.2 pA and a voltage of 41.78 mV were achieved. The fast response time of 1.14 s, reset time of 1.25 s, and pyroelectric coefficient of ∼44 pC/m K demonstrate a self-powered temperature sensing capability of the P-PNG. These characteristics make the P-PNG suitable for flexible piezoelectric-pyroelectric energy harvesting for self-powered electronic devices.
这项工作介绍了一种基于碘化甲基铵铅(CHNHPbI)的压电- pyroelectric 纳米发电机(P-PNG),它结合了能够收集机械能和热能的电纺聚偏二氟乙烯(PVDF)纳米纤维。在以 4 Hz 的频率施加周期性压缩接触力时,会产生约 220 mV 的输出电压。该 P-PNG 的压电系数()约为 19.7 pC/N,具有高耐久性(60000 次循环)和快速响应时间(约 1 ms)。最大产生的输出功率密度(约 0.8 mW/m)足以给各种电容器充电,具有替代外部电源为便携式设备供电的潜力。此外,在 38 K 的循环加热和冷却下,实现了 18.2 pA 的热释电输出电流和 41.78 mV 的电压。1.14 s 的快速响应时间、1.25 s 的重置时间和约 44 pC/m K 的热释电系数表明了 P-PNG 的自供电温度传感能力。这些特性使 P-PNG 适合用于自供电电子设备的柔性压电- pyroelectric 能量收集。