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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Synthesis and electrochemical properties of vanadium pentoxide nanotube arrays
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Synthesis and electrochemical properties of vanadium pentoxide nanotube arrays

机译:五氧化二钒纳米管阵列的合成及电化学性能

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Nanotube arrays of amorphous vanadium pentoxide (V2O5) were synthesized via template-based electrodeposition, and its electrochemical properties were investigated for Li-ion intercalation applications. The nanotubes have a length of 10 mum, outer diameter of 200 nm and inner diameter of 100 nm. Electrochemical analyses demonstrate that the V2O5 nanotube array delivers a high initial capacity of 300 mAh/g, about twice that of the electrochemically prepared V2O5 film. Although the V2O5 nanotube array shows a more drastic degradation than the film under electrochemical redox cycles, the nanotube array reaches a stabilized capacity of 160 mAh/g, which remains about 1.3 times the stabilized capacity of the film.
机译:通过基于模板的电沉积法合成了无定形五氧化二钒(V2O5)的纳米管阵列,并研究了其电化学性质以用于锂离子嵌入应用。纳米管的长度为10μm,外径为200nm,内径为100nm。电化学分析表明,V2O5纳米管阵列可提供300 mAh / g的高初始容量,约为电化学制备的V2O5膜的两倍。尽管在电化学氧化还原循环下,V 2 O 5纳米管阵列比薄膜显示出更大的降解,但是纳米管阵列达到了160 mAh / g的稳定容量,仍然是薄膜稳定容量的1.3倍。

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