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原子层沉积前驱体扩散对基于固态碳纳米管的超级电容器性能的影响。

Impact of the atomic layer deposition precursors diffusion on solid-state carbon nanotube based supercapacitors performances.

作者信息

Fiorentino Giuseppe, Vollebregt Sten, Tichelaar F D, Ishihara Ryoichi, Sarro Pasqualina M

机构信息

Delft University of Technology, Delft Institute of Microsystems and Nanotechnology, Faculty of Electrical Engineering, Mathematics and Computers Science, Laboratory of Electronic Components, Technology and Materials, Feldmannweg 17, 2628 CT Delft, The Netherlands.

出版信息

Nanotechnology. 2015 Feb 13;26(6):064002. doi: 10.1088/0957-4484/26/6/064002. Epub 2015 Jan 21.

Abstract

A study on the impact of atomic layer deposition (ALD) precursors diffusion on the performance of solid-state miniaturized nanostructure capacitor array is presented. Three-dimensional nanostructured capacitor array based on double conformal coating of multiwalled carbon nanotubes (MWCNTs) bundles is realized using ALD to deposit Al2O3 as dielectric layer and TiN as high aspect-ratio conformal counter-electrode on 2 μm long MWCNT bundles. The devices have a small footprint (from 100 μm(2) to 2500 μm(2)) and are realized using an IC wafer-scale manufacturing process with high reproducibility (≤0.3E-12F deviation). To evaluate the enhancement of the electrode surface, the measured capacitance values are compared to a lumped circuital model. The observed discrepancies are explained with a partial coating of the CNT, that determine a limited use of the available electrode surface area. To analyze the CNT coating effectiveness, the ALD precursors diffusions inside the CNT bundle is studied using a Knudsen diffusion mechanism.

摘要

本文介绍了一项关于原子层沉积(ALD)前驱体扩散对固态小型化纳米结构电容器阵列性能影响的研究。利用ALD在2μm长的多壁碳纳米管(MWCNT)束上沉积Al2O3作为介电层,沉积TiN作为高深宽比共形对电极,实现了基于MWCNT束双共形涂层的三维纳米结构电容器阵列。这些器件占地面积小(从100μm²到2500μm²),并采用具有高重现性(偏差≤0.3E-12F)的集成电路晶圆级制造工艺实现。为了评估电极表面的增强情况,将测量的电容值与集总电路模型进行比较。观察到的差异用碳纳米管的部分涂层来解释,这决定了可用电极表面积的有限利用。为了分析碳纳米管涂层的有效性,使用克努森扩散机制研究了ALD前驱体在碳纳米管束内的扩散。

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