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用于能量存储的纳米管金属-绝缘体-金属电容器阵列

Nanotubular metal-insulator-metal capacitor arrays for energy storage.

作者信息

Banerjee Parag, Perez Israel, Henn-Lecordier Laurent, Lee Sang Bok, Rubloff Gary W

机构信息

Department of Materials Science and Engineering, University of Maryland, College Park, Maryland 20742, USA.

出版信息

Nat Nanotechnol. 2009 May;4(5):292-6. doi: 10.1038/nnano.2009.37. Epub 2009 Mar 15.

Abstract

Nanostructured devices have the potential to serve as the basis for next-generation energy systems that make use of densely packed interfaces and thin films. One approach to making such devices is to build multilayer structures of large area inside the open volume of a nanostructured template. Here, we report the use of atomic layer deposition to fabricate arrays of metal-insulator-metal nanocapacitors in anodic aluminium oxide nanopores. These highly regular arrays have a capacitance per unit planar area of approximately 10 microF cm-2 for 1-microm-thick anodic aluminium oxide and approximately 100 microF cm-2 for 10-microm-thick anodic aluminium oxide, significantly exceeding previously reported values for metal-insulator-metal capacitors in porous templates. It should be possible to scale devices fabricated with this approach to make viable energy storage systems that provide both high energy density and high power density.

摘要

纳米结构器件有潜力成为利用密集堆积界面和薄膜的下一代能源系统的基础。制造此类器件的一种方法是在纳米结构模板的开放空间内构建大面积的多层结构。在此,我们报告了使用原子层沉积在阳极氧化铝纳米孔中制造金属-绝缘体-金属纳米电容器阵列。对于1微米厚的阳极氧化铝,这些高度规则的阵列每单位平面面积的电容约为10微法/平方厘米,对于10微米厚的阳极氧化铝约为100微法/平方厘米,显著超过了先前报道的多孔模板中金属-绝缘体-金属电容器的值。使用这种方法制造的器件应该能够扩大规模,以制造出既具有高能量密度又具有高功率密度的可行储能系统。

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