Park Kwi-Il, Bae Soo Bin, Yang Seong Ho, Lee Hyung Ik, Lee Kisu, Lee Seung Jun
The 4th Research and Development Institute-3, Agency for Defense Development (ADD), Yuseong P.O. Box 35, Daejeon 305-600, Republic of Korea.
Nanoscale. 2014 Aug 7;6(15):8962-8. doi: 10.1039/c4nr02246g.
We have synthesized BaTiO3 nanowires (NWs) via a simple hydrothermal method at low temperature and developed a lead-free, flexible nanocomposite generator (NCG) device by a simple, low-cost, and scalable spin-coating method. The hydrothermally grown BaTiO3 NWs are mixed in a polymer matrix without a toxic dispersion enhancer to produce a piezoelectric nanocomposite (p-NC). During periodical and regular bending and unbending motions, the NCG device fabricated by utilizing a BaTiO3 NWs-polydimethylsiloxane (PDMS) composite successfully harvests the output voltage of ∼ 7.0 V and current signals of ∼ 360 nA, which are utilized to drive a liquid crystal display (LCD). We also characterized the instantaneous power (∼ 1.2 μW) of the NCG device by calculating the load voltage and current through the connected external resistance.
我们通过一种简单的低温水热法合成了钛酸钡纳米线(NWs),并采用一种简单、低成本且可扩展的旋涂法开发了一种无铅柔性纳米复合发电机(NCG)装置。通过水热法生长的钛酸钡纳米线在没有有毒分散增强剂的情况下混合在聚合物基质中,以制备压电纳米复合材料(p-NC)。在周期性和规则的弯曲与伸直运动过程中,利用钛酸钡纳米线-聚二甲基硅氧烷(PDMS)复合材料制造的NCG装置成功收获了约7.0 V的输出电压和约360 nA的电流信号,这些信号被用于驱动液晶显示器(LCD)。我们还通过计算通过连接的外部电阻的负载电压和电流来表征NCG装置的瞬时功率(约1.2 μW)。