Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, ON M5S 3G8, Canada.
Sensors (Basel). 2023 Apr 10;23(8):3859. doi: 10.3390/s23083859.
Lead-containing piezoelectric materials typically show the highest energy conversion efficiencies, but due to their toxicity they will be limited in future applications. In their bulk form, the piezoelectric properties of lead-free piezoelectric materials are significantly lower than lead-containing materials. However, the piezoelectric properties of lead-free piezoelectric materials at the nano scale can be significantly larger than the bulk scale. This review looks at the suitability of ZnO nanostructures as candidate lead-free piezoelectric materials for use in piezoelectric nanogenerators (PENGs) based on their piezoelectric properties. Of the papers reviewed, Neodymium-doped ZnO nanorods (NRs) have a comparable piezoelectric strain constant to bulk lead-based piezoelectric materials and hence are good candidates for PENGs. Piezoelectric energy harvesters typically have low power outputs and an improvement in their power density is needed. This review systematically reviews the different composite structures of ZnO PENGs to determine the effect of composite structure on power output. State-of-the-art techniques to increase the power output of PENGs are presented. Of the PENGs reviewed, the highest power output belonged to a vertically aligned ZnO nanowire (NWs) PENG (1-3 nanowire composite) with a power output of 45.87 μW/cm under finger tapping. Future directions of research and challenges are discussed.
含铅压电材料通常表现出最高的能量转换效率,但由于其毒性,它们在未来的应用中将受到限制。在块状形式下,无铅压电材料的压电性能明显低于含铅材料。然而,无铅压电材料在纳米尺度下的压电性能可以显著大于块状尺度。本综述着眼于 ZnO 纳米结构作为候选无铅压电材料在基于其压电性能的压电纳米发电机(PENG)中的适用性。在所综述的论文中,掺钕氧化锌纳米棒(NR)具有与块状含铅压电材料相当的压电应变常数,因此是 PENG 的良好候选材料。压电能量收集器通常输出功率较低,需要提高其功率密度。本综述系统地综述了 ZnO PENG 的不同复合结构,以确定复合结构对功率输出的影响。介绍了提高 PENG 输出功率的最新技术。在所综述的 PENG 中,功率输出最高的是垂直排列的 ZnO 纳米线(NWs)PENG(1-3 根纳米线复合),在手指敲击下的功率输出为 45.87 μW/cm。讨论了未来的研究方向和挑战。