论文标题

高度执行的间隔TIO $ _2 $纳米管启用具有纳米晶体的确定的共形涂层NB $ _2 $ o $ $ _5 $和高性能超级电容器应用程序

Highly Conducting Spaced TiO$_2$ Nanotubes Enable Defined Conformal Coating with Nanocrystalline Nb$_2$O$_5$ and High Performance Supercapacitor Applications

论文作者

Ozkan, Selda, Nguyen, Nhat Truong, Hwang, Imgon, Mazare, Anca, Schmuki, Patrik

论文摘要

在这项工作中,我们报告了氮化间隔的Tio $ _2 $纳米管的电化学行为,并与纳米晶体固定涂层NB $ _2 $ o $ $ _5 $ layer,并找到这些层次结构的出色超级电容器性能。通过三个步骤的过程获得了高度对齐的导电1D电极:i)具有定义且可调节的InterTube间距的自组织的纳米管的增长,ii)保形NB $ _2 $ _5 $ _5 $ _5 $ _5 $ _5 $在管间空间中的装饰(同时为整个活跃区域提供全电源访问),以及IIIII),以及IIIII),以及IIII)。关键是纳米管阵列的生长,并带有常规的管子到管穿间穿间穿间穿间穿间穿间隔,该纳米管阵列可以使用辅助材料(例如nb $ _2 $ o o $ _5 $)进行优化的装饰。我们观察到电极电容从158 $ $ $ f cm-2 bare tio $ _2 $ nts,增加到1536 $ $ $ f cm-f cm-f cm-f cm-f cm-f cm-2的tio $ _2 $ _2 $ _2 $ _2 $ _2 $ o $ $ $ $ _5 $ _5 $ nts,最后37 mf cm-2 for NB $ _2 $ o $ $ o $ $ $ _5 $ _5 $ _5 $ _5 $ _5 ub and and and and nit and and and n int and and and and and nir and nitr and and nitrrrient。这种急剧增加可以首先归因于管道阵列之间确定的定义间距,然后允许使用二级活动涂层进行共形涂层。其次,硝化导致整个支架的电子电导率急剧增加,从而减少了电阻损失。

In this work, we report on the electrochemical behavior of nitrided spaced TiO$_2$ nanotubes conformally coated with a nanocrystalline Nb$_2$O$_5$ layer and find for these hierarchical structures an excellent supercapacitor performance. Highly aligned conductive 1D electrodes were obtained by a three step process: i) growth of self-organized nanotubes with defined and adjustable intertube spacing, ii) conformal Nb$_2$O$_5$ decoration in the tube interspace (while providing full electrolyte access to the entire active area), and iii) high temperature nitridation. Key is the growth of a nanotube array with regular tube-to-tube interspacing that enables an optimized decoration with secondary materials such as Nb$_2$O$_5$. We observe an increase in electrode capacitance from 158 $μ$F cm-2 for bare TiO$_2$ NTs, to 1536 $μ$F cm-2 for TiO$_2$/Nb$_2$O$_5$ NTs, to finally 37 mF cm-2 for Nb$_2$O$_5$ decorated and then nitrided nanotubes. This drastic increase can be ascribed firstly to the defined spacing established between the tube arrays that then allows for a conformal coating with a secondary active coating. Secondly, nitridation causes a drastic increase of the electron conductivity of the entire scaffold and thus reduces resistive losses.

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