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Pseudocapacitive and hierarchically ordered porous electrode materials supercapacitors

机译:伪电容和分级有序的多孔电极材料超级电容器

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Commercially available double layer capacitors store energy in an electrostatic field. This forms in the form of a double layer by charged particles arranged on two electrodes consisting mostly of active carbon. Such double layer capacitors exhibit a low energy density, so that components with large capacity according to large electrode areas are required. Our research focuses on the development of new electrode materials to realize the production of electrical energy storage systems with high energy density and high power density. Metal oxide based electrodes increase the energy density and the capacitance by addition of pseudo capacitance to the static capacitance present by the double layer super-capacitor electrodes. The so-called hybrid asymmetric cell capacitors combine both types of energy storage in a single component. In this work, the production routes followed in our laboratories for synthesis of nano-porous and aligned metal oxide electrodes using the electrochemical and sputter deposition as well as anodization methods will be described. Our characterisation studies concentrate on electrodes having redox metal-oxides (e.g. MnO_x and WO_x) and hierarchically aligned nano-porous Li-doped TiO_2-NTs. The material specific and electrochemical properties achieved with these electrodes will be presented.
机译:市售的双层电容器在静电场中存储能量。这由布置在两个主要由活性炭组成的电极上的带电粒子形成双层形式。这种双层电容器表现出低的能量密度,因此需要根据大电极面积具有大容量的部件。我们的研究专注于新型电极材料的开发,以实现具有高能量密度和高功率密度的电能存储系统的生产。基于金属氧化物的电极通过将伪电容添加到由双层超级电容器电极提供的静态电容来增加能量密度和电容。所谓的混合非对称单元电容器将两种类型的能量存储组合在一个组件中。在这项工作中,将描述在我们实验室中遵循的使用电化学和溅射沉积以及阳极氧化方法合成纳米多孔排列的金属氧化物电极的生产路线。我们的表征研究集中在具有氧化还原金属氧化物(例如MnO_x和WO_x)和分层排列的纳米多孔锂掺杂TiO_2-NTs的电极上。将介绍用这些电极实现的材料特异性和电化学性能。

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