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Ti 掺杂诱导的局域结构畸变增强 RuO2 基超级电容器的赝电容。

Local structure distortion induced by Ti dopants boosting the pseudocapacitance of RuO2-based supercapacitors.

机构信息

National Synchrotron Radiation Research Center, Hsin-Chu 30076, Taiwan.

出版信息

Nanoscale. 2015 Oct 7;7(37):15450-61. doi: 10.1039/c5nr03660g.

Abstract

Binary oxides with atomic ratios of Ru/Ti = 90/10, 70/30, and 50/50 were fabricated using H2O2-oxidative precipitation with the assistance of a cetyltrimethylammonium bromide (CTAB) template, followed by a thermal treatment at 200 °C. The characteristics of electron structure and local structure extracted from X-ray absorption spectroscopy (XAS) and transmission electron microscopy (TEM) analyses indicate that incorporation of Ti into the RuO2 lattice produces not only the local structural distortion of the RuO6 octahedra in (Ru-Ti)O2 with an increase in the central Ru-Ru distance but also a local crystallization of RuO2. Among the three binary oxides studied, (Ru70-Ti30)O2 exhibits a capacitance improvement of about 1.4-fold relative to the CTAB-modified RuO2, mainly due to the enhanced crystallinity of the distorted RuO6 structure rather than the surface area effect. Upon increasing the extent of Ti doping, the deteriorated supercapacitive performance of (Ru50-Ti50)O2 results from the formation of localized nano-clusters of TiO2 crystallites. These results provide insight into the important role of Ti doping in RuO2 that boosts the pseudocapacitive performance for RuO2-based supercapacitors. The present result is crucial for the design of new binary oxides for supercapacitor applications with extraordinary performance.

摘要

采用 H2O2-氧化沉淀法,在十六烷基三甲基溴化铵(CTAB)模板的辅助下,制备了原子比 Ru/Ti 分别为 90/10、70/30 和 50/50 的二元氧化物,然后在 200°C 下进行热处理。从 X 射线吸收光谱(XAS)和透射电子显微镜(TEM)分析中提取的电子结构和局部结构特征表明,Ti 掺入 RuO2 晶格不仅会导致(Ru-Ti)O2 中 RuO6 八面体的局部结构变形,从而增加中心 Ru-Ru 距离,还会导致 RuO2 的局部结晶。在研究的三种二元氧化物中,(Ru70-Ti30)O2 的电容性能相对于 CTAB 改性的 RuO2 提高了约 1.4 倍,这主要归因于扭曲的 RuO6 结构的增强结晶度,而不是表面积效应。随着 Ti 掺杂程度的增加,(Ru50-Ti50)O2 的超级电容器性能恶化,这是由于形成了 TiO2 微晶的局部纳米团簇。这些结果深入了解了 Ti 掺杂在 RuO2 中的重要作用,这提高了基于 RuO2 的超级电容器的赝电容性能。本研究结果对于设计具有卓越性能的超级电容器用新型二元氧化物至关重要。

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