Nour E S, Chey C O, Willander M, Nur O
Nanotechnology. 2015 Mar 6;26(9):095502. doi: 10.1088/0957-4484/26/9/095502.
We have successfully synthesized highly dense and well aligned zinc oxide nanowires (NWs) on the two sides of a PEDOT: PSS substrate by a single step low temperature hydrothermal method. The grown sample was used to fabricate a double sided piezoelectric nanogenerator (NG). The maximum harvested output power density from the fabricated double sided NG configuration was about 4.44 mW cm(-2). The results obtained from the present double sided NG were approximately double the output from a single side. In addition to that, the voltage polarity of the harvested voltage from the two sides of the NG has been investigated. The results showed that upon bending, an anisotropic voltage polarity is generated on the two sides. Indicating that, this double sided NG can be used as a self-powered voltage polarity based direction sensor. The results of the present flexible double sided NG is very promising for harvesting energy from irregular mechanical energy sources in the surrounding environment. In addition, the fabricated configuration showed stability for sensing and can be used in surveillance and security applications.
我们通过一步低温水热法成功地在PEDOT:PSS衬底的两侧合成了高密度且排列良好的氧化锌纳米线(NWs)。将生长的样品用于制造双面压电纳米发电机(NG)。从制造的双面NG配置中收获的最大输出功率密度约为4.44 mW cm(-2)。从当前双面NG获得的结果大约是单面输出的两倍。除此之外,还研究了从NG两侧收获的电压的电压极性。结果表明,在弯曲时,两侧会产生各向异性的电压极性。这表明,这种双面NG可以用作基于自供电电压极性的方向传感器。当前柔性双面NG的结果对于从周围环境中的不规则机械能来源收集能量非常有前景。此外,制造的配置在传感方面表现出稳定性,可用于监视和安全应用。