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用于超级电容器的 IrOx 箔在碳纳米管上的纳米结构电极。

A nanostructured electrode of IrOx foil on the carbon nanotubes for supercapacitors.

机构信息

Department of Electronic Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan.

出版信息

Nanotechnology. 2011 Sep 2;22(35):355708. doi: 10.1088/0957-4484/22/35/355708. Epub 2011 Aug 9.

Abstract

IrO(x) nanofoils (IrO(x)NF) of high surface area are sputtered on multi-wall carbon nanotubes (CNT) in the preparation of a structured electrode on a stainless steel (SUS) substrate for supercapacitor applications. This IrO(x)/CNT/SUS electrode is featured with intriguing IrO(x) curved foils of 2-3 nm in thickness and 400-500 nm in height, grown on top of the vertically aligned CNT film with a tube diameter of ∼ 40 nm. These nanofoils are moderately oxidized during reactive sputtering and appeared translucent under the electron microscope. Detailed structural analysis shows that they are comprised of contiguous grains of iridium metal, iridium dioxide, and glassy iridium oxide. Considerable Raman line broadening is also evidenced for the attributed nanosized iridium oxides. Two capacitive properties of the electrode are significantly enhanced with addition of the curved IrO(x) foils. First, IrO(x)NF reduces the electrode Ohmic resistance, which was measured at 3.5 Ω cm(2) for the CNT/SUS and 2.5 Ω cm(2) for IrO(x)NF/CNT/SUS using impedance spectroscopy. Second, IrO(x)NF raises the electrode capacitance from 17.7 F g(-1) (CNT/SUS) to 317 F g(-1) (IrO(x)/CNT/SUS), measured with cyclic voltammetry. This notable increase is further confirmed by the galvanostatic charge/discharge experiment, measuring 370 F g(-1) after 2000 uninterrupted cycles between - 1.0 and 0.0 V (versus Ag/AgCl).

摘要

高表面积的 IrO(x) 纳米薄片(IrO(x)NF)被溅射在多壁碳纳米管(CNT)上,以在不锈钢(SUS)基底上制备用于超级电容器应用的结构化电极。这种 IrO(x)/CNT/SUS 电极的特点是具有引人注目的 2-3nm 厚和 400-500nm 高的 IrO(x) 弯曲薄片,生长在垂直排列的 CNT 薄膜上,管直径约为 40nm。这些纳米薄片在反应溅射过程中适度氧化,在电子显微镜下呈现半透明。详细的结构分析表明,它们由连续的铱金属、二氧化铱和玻璃态氧化铱颗粒组成。也证明了归因于纳米级氧化铱的相当大的拉曼线展宽。通过添加弯曲的 IrO(x) 薄片,电极的两个电容性能得到显著提高。首先,IrO(x)NF 降低了电极欧姆电阻,通过阻抗谱测量,对于 CNT/SUS 为 3.5 Ω cm(2),对于 IrO(x)NF/CNT/SUS 为 2.5 Ω cm(2)。其次,IrO(x)NF 将电极电容从 17.7 F g(-1)(CNT/SUS)提高到 317 F g(-1)(IrO(x)/CNT/SUS),通过循环伏安法测量。通过恒电流充放电实验进一步证实了这一显著增加,在 - 1.0 和 0.0 V(相对于 Ag/AgCl)之间进行 2000 次不间断循环后,测量值为 370 F g(-1)。

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