Koka Aneesh, Zhou Zhi, Tang Haixiong, Sodano Henry A
Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, FL, 32611, USA.
Nanotechnology. 2014 Sep 19;25(37):375603. doi: 10.1088/0957-4484/25/37/375603. Epub 2014 Aug 22.
A novel approach for the synthesis of ultra-long (up to ∼45 μm) vertically aligned barium titanate (BaTiO3) nanowire (NW) arrays on an oxidized Ti substrate is developed. The fabrication method uses a two-step hydrothermal reaction that firstly, involves the growth of ultra-long aligned sodium titanate NW arrays and secondly, involves the transfer of these precursor sodium titanate NW arrays to BaTiO3 NW arrays while retaining the shape of the template nanowires. The ion-exchange during the second hydrothermal reaction in barium hydroxide solution results in the structural transformation from single-crystal sodium titanate NW arrays to BaTiO3 NW arrays. This synthesis approach is low-cost, scalable, and enables control over the morphology and aspect ratio of the resulting BaTiO3 NW arrays by tuning the hydrothermal reaction parameters. In addition to the synthesis methods reported here, the energy harvesting behavior of the BaTiO3 NW arrays is evaluated as a function of their aspect ratio and demonstrated to produce significant impact on the energy produced. The newly developed hydrothermal synthesis process for controlled growth of ultra-long, vertically aligned BaTiO3 NW arrays provides a promising method for their efficient utilization in nano-electromechanical system-based sensors, energy harvesters, and nano-scale electronic devices.
开发了一种在氧化钛衬底上合成超长(长达约45μm)垂直排列的钛酸钡(BaTiO3)纳米线(NW)阵列的新方法。该制备方法采用两步水热反应,首先是生长超长排列的钛酸钠NW阵列,其次是将这些前驱体钛酸钠NW阵列转移为BaTiO3 NW阵列,同时保留模板纳米线的形状。在氢氧化钡溶液中进行的第二步水热反应期间的离子交换导致从单晶钛酸钠NW阵列到BaTiO3 NW阵列的结构转变。这种合成方法成本低、可扩展,并且通过调节水热反应参数能够控制所得BaTiO3 NW阵列的形态和纵横比。除了这里报道的合成方法之外,还评估了BaTiO3 NW阵列的能量收集行为与其纵横比的关系,并证明其对产生的能量有显著影响。新开发的用于可控生长超长、垂直排列的BaTiO3 NW阵列的水热合成工艺为其在基于纳米机电系统的传感器、能量收集器和纳米级电子器件中的有效利用提供了一种有前景的方法。