Department of Electronic Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan.
Nanotechnology. 2011 Mar 18;22(11):115706. doi: 10.1088/0957-4484/22/11/115706. Epub 2011 Feb 8.
A thin film of novel hierarchical structure, suitable for supercapacitor applications, has been developed through combining conductive multi-wall carbon nanotubes (MWCNTs) and square IrO(2) nanotubes (IrO(2)NT) of nanometer size. Synthesis of this hierarchical structure with open porosity is performed by depositing IrO(2) short tubes densely along the long wires of carbon nanotube on a substrate of stainless steel. A IrO(2) tube of rutile structure grows in the [001] direction, with an opening at its top, surrounded by very thin walls. The IrO(2) addition on the MWCNT template increases the capacitance of the CNT thin film effectively, because of pseudocapacitance of the IrO(2) surface. For this particular composite, featured with two tubular nanostructures, the specific capacitance increases from 15 F g(-1) (MWCNT) to 69 F g(-1) (IrO(2)NT/MWCNT), measured using the galvanostatic discharge experiment. Its property of fast retrieval of the stored charge is assured in the impedance measurement, showing that the internal resistance of the IrO(2)NT/MWCNT nanocomposite electrode is lower than that of the bare MWCNTs.
一种适用于超级电容器的新型分层结构薄膜,通过将导电多壁碳纳米管(MWCNT)和纳米尺寸的方氧化铱(IrO2)纳米管(IrO2NT)结合而开发。这种具有开放孔隙率的分层结构的合成是通过在不锈钢基底上沉积 IrO2 短管,使其密集地沿着碳纳米管的长丝生长来实现的。锐钛矿结构的 IrO2 管沿[001]方向生长,顶部开口,周围是非常薄的壁。由于 IrO2 表面的赝电容,IrO2 对 MWCNT 模板的添加可有效增加 CNT 薄膜的电容。对于这种具有两种管状纳米结构的特定复合材料,通过恒电流放电实验测量,其比电容从 15 F g-1(MWCNT)增加到 69 F g-1(IrO2NT/MWCNT)。在阻抗测量中,其存储电荷的快速检索性能得到了保证,表明 IrO2NT/MWCNT 纳米复合材料电极的内阻低于裸 MWCNTs。