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A highly dense structure boosts energy harvesting and cycling reliabilities of a high-performance lead-free energy harvester

机译:高度致密的结构提高了高性能无铅能源收割机的能量收集和循环可靠性

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Currently, effective piezoelectric energy harvesters are based on Pb(Zr, Ti)O-3 (PZT) ceramics. However, the growing environmental concerns have been pushing the development of viable green alternatives for lead-based piezoelectric ceramics. In this study, a high quality Mn-modified (K0.5Na0.5) NbO3 (Mn-KNN) lead-free piezoelectric ceramic has been prepared, which is promising for use in lead-free piezoelectric energy harvesters. Herein, we showed that the 1.0 mol% Mn-KNN ceramics not only possessed high Curie temperature, but also exhibited excellent energy harvesting performance due to the highly dense fine-grained structure and various domain configurations. In the mode of a cantilever-type energy harvester, a high output power of 85 mu W and peak-to-peak voltage of 16 V were obtained at the acceleration of 40 m s(-2). Furthermore, the 1.0 mol% Mn-KNN energy harvester exhibits excellent fatigue resistance up to 10(6) cycles. These findings indicate potential applications of the Mn-KNN piezoelectric energy harvester for self-powered sources of wireless sensor network systems.
机译:目前,有效的压电能量收割机基于PB(Zr,Ti)O-3(PZT)陶瓷。然而,不断增长的环境问题一直推动了可行的绿色替代品的开发,用于铅基压电陶瓷。在该研究中,已经制备了高质量的Mn改性(K0.5NA0.5)NBO3(MN-KNN)无铅压电陶瓷,这是有希望用于无铅压电能量收割机。这里,我们表明,1.0mol%Mn-Knn陶瓷不仅具有高居里温度,而且由于高度密集的细粒结构和各种结构域构造,也表现出优异的能量收集性能。在悬臂式能量收割机的模式下,在40m S(-2)的加速度下获得85μW的高输出功率和16V的峰峰值电压。此外,1.0mol%Mn-Knn能量收割机具有优异的疲劳性,高达10(6)个循环。这些发现表明Mn-Knn压电能量收割机用于无线传感器网络系统的自供电源的潜在应用。

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