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Mesoporous nanocrystalline film architecture for capacitive storage devices

机译:用于电容存储设备的中孔纳米晶膜结构

摘要

A mesoporous, nanocrystalline, metal oxide construct particularly suited for capacitive energy storage that has an architecture with short diffusion path lengths and large surface areas and a method for production are provided. Energy density is substantially increased without compromising the capacitive charge storage kinetics and electrode demonstrates long term cycling stability. Charge storage devices with electrodes using the construct can use three different charge storage mechanisms immersed in an electrolyte: (1) cations can be stored in a thin double layer at the electrode/electrolyte interface (non-faradaic mechanism); (2) cations can interact with the bulk of an electroactive material which then undergoes a redox reaction or phase change, as in conventional batteries (faradaic mechanism); or (3) cations can electrochemically adsorb onto the surface of a material through charge transfer processes (faradaic mechanism).
机译:提供了一种特别适用于电容性能量存储的中孔,纳米晶体的金属氧化物构造,其具有短的扩散路径长度和大的表面积的结构以及用于生产的方法。在不损害电容性电荷存储动力学的情况下,能量密度显着提高,并且电极具有长期循环稳定性。使用该构造的带有电极的电荷存储设备可以使用三种不同的浸入电解质中的电荷存储机制:(1)阳离子可以在电极/电解质界面的薄双层中存储(非法拉第机理); (2)阳离子会与大量电活性物质发生相互作用,然后发生氧化还原反应或相变,这与常规电池(法拉第机理)相同;或(3)阳离子可以通过电荷转移过程(法拉第机理)电化学吸附在材料表面。

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