School of Material Science and Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Nanotechnology. 2012 Sep 21;23(37):375401. doi: 10.1088/0957-4484/23/37/375401. Epub 2012 Aug 24.
In spite of high piezoelectricity, only a few one-dimensional ferroelectric nano-materials with perovskite structure have been used for piezoelectric nanogenerator applications. In this paper, we report high output electrical signals, i.e. an open-circuit voltage of 3.2 V and a closed-circuit current of 67.5 nA (current density 9.3 nA cm(-2)) at 0.38% strain and 15.2% s(-1) strain rate, using randomly aligned lead-free KNbO(3) ferroelectric nanorods (1 μm length) with piezoelectric coefficient (d(33) ~ 55 pm V (-1)). A flexible piezoelectric nanogenerator is mainly composed of KNbO(3)-poly(dimethylsiloxane) (PDMS) composite sandwiched by Au/Cr-coated polymer substrates. We deposit a thin poly(methyl methacrylate) (PMMA) layer between the KNbO(3)-PDMS composite and the Au/Cr electrode to completely prevent dielectric breakdown during electrical poling and to significantly reduce leakage current during excessive straining. The flexible KNbO(3)-PDMS composite device shows a nearly frequency-independent dielectric constant (3.2) and low dielectric loss (<0.006) for the frequency range of 10(2)-10(5) Hz. These results imply that short and randomly aligned ferroelectric nanorods can be used for a flexible high output nanogenerator as well as high-k capacitor applications by performing electrical poling and further optimizing the device structure.
尽管具有较高的压电性,但仅有少数几种具有钙钛矿结构的一维铁电纳米材料被用于压电纳米发电机应用。在本文中,我们报道了使用随机取向的无铅 KNbO(3)铁电纳米棒(1μm 长度)获得了高输出电信号,即 0.38%应变时开路电压为 3.2V,闭路电流为 67.5nA(电流密度为 9.3nAcm(-2)),应变率为 15.2%s(-1),其压电系数(d(33)55pmV(-1))。一个柔性压电纳米发电机主要由随机取向的 KNbO(3)-聚二甲基硅氧烷(PDMS)复合材料夹在 Au/Cr 涂层聚合物基底之间构成。我们在 KNbO(3)-PDMS 复合材料和 Au/Cr 电极之间沉积一层薄的聚甲基丙烯酸甲酯(PMMA)层,以在电极化过程中完全防止介电击穿,并在过度应变时显著降低漏电流。柔性的 KNbO(3)-PDMS 复合材料器件在 10(2)-10(5)Hz 的频率范围内表现出几乎与频率无关的介电常数(~3.2)和低介电损耗(<0.006)。这些结果表明,短且随机取向的铁电纳米棒可用于柔性高输出纳米发电机以及高 k 电容器应用,方法是进行电极化并进一步优化器件结构。