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Vertically-aligned lead-free BCTZY nanofibers with enhanced electrical properties for flexible piezoelectric nanogenerators

机译:垂直排列的无铅BCTZY纳米纤维,具有增强的电性能,用于柔性压电纳米发电机

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摘要

Flexible lead-free (Ba0.85Ca0.15)(Ti0.9Zr0.1)O-3-0.2 mol%Y nanofibers (BCTZY NFs) were synthesized by electrospinning and their corresponding nanogenerators (NGs) with vertical alignments were fabricated. The low-temperature sintering properties of BCTZY NFs were investigated, to optimize their synthesis path and minimize the thermal energy consumption during the sintering process. The continuity, flexibility, and stability of the BCTZ-based NFs were improved by adding Y3+. Moreover, the temperature-evolved Raman spectra displayed a high Curie temperature of 280 degrees C for BCTZY NFs, which was far higher than that of about 90 degrees C for BCTZ-based ceramic bulks, owing to the discontinuous physical property of NFs. The dielectric, ferroelectric, and piezoelectric properties of the vertically aligned BCTZY NFs/PDMS were estimated and compared with those of BCTZ NFs/PDMS composites, to verify the advantages of vertical alignments and the donor doping effect of Y3+. Vertically aligned BCTZY NF-based NGs showed an average V-OC of 3.0 V and I-SC of 85 nA by finger tapping, suggesting their potential applications in tiny energy harvesting.
机译:通过电纺合成了柔性的无铅(Ba0.85Ca0.15)(Ti0.9Zr0.1)O-3-0.2 mol%Y纳米纤维(BCTZY NFs),并制备了其垂直取向的纳米发电机(NGs)。研究了BCTZY NFs的低温烧结性能,以优化它们的合成路径并最大程度地减少烧结过程中的热能消耗。通过添加Y3 +可以改善基于BCTZ的NF的连续性,灵活性和稳定性。此外,温度演化的拉曼光谱显示出BCTZY NFs的居里温度为280摄氏度,这远高于BCTZ基陶瓷块的居里温度约90摄氏度,这是由于NFs的物理特性不连续所致。估算了垂直排列的BCTZY NFs / PDMS的介电,铁电和压电性能,并将其与BCTZ NFs / PDMS复合材料的介电,铁电和压电性能进行了比较,以验证垂直排列的优势和Y3 +的施主掺杂效应。垂直排列的BCTZY NF基NGs通过手指敲击显示平均V-OC为3.0 V,I-SC为85 nA,表明它们在微小能量收集中的潜在应用。

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