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Vanadium oxide aerogels: Nanostructured materials for enhanced energy storage

机译:氧化钒气凝胶:增强能量存储的纳米结构材料

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The synthesis, chemistry, local structure and electrochemical properties of vanadium oxide xerogels and aerogels have much in common. The one difference in their respective synthesis routes, the means by which solvent is removed, has a significant influence on the resulting morphology. The high surface area, nanodimensional solid phase, short diffusion paths and interconnected mesoporosity of the aerogels exert a profound effect on their electrochemical properties. Our studies with V2O5 aerogels show that these materials offer the promise of achieving both high energy density and high power density because of a pseudocapacitive charge storage mechanism which develops.
机译:氧化钒干凝胶和气凝胶的合成,化学,局部结构和电化学性质有很多共同之处。它们各自的合成路线中的一种差异,即除去溶剂的方式,对所得的形态有重大影响。气凝胶的高表面积,纳米级固相,短扩散路径和相互连接的中孔性对其电化学性能产生了深远的影响。我们对V2O5气凝胶的研究表明,由于开发出的伪电容电荷存储机制,这些材料有望实现高能量密度和高功率密度。

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