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Design and synthesis of MnO _2/Mn/MnO _2 sandwich-structured nanotube arrays with high supercapacitive performance for electrochemical energy storage

机译:具有高超电容性能的MnO _2 / Mn / MnO _2夹层结构纳米管阵列的设计与合成

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摘要

We demonstrate the design and fabrication of novel nanoarchitectures of MnO _2/Mn/MnO _2 sandwich-like nanotube arrays for supercapacitors. The crystalline metal Mn layers in the MnO _2/Mn/ MnO _2 sandwich-like nanotubes uniquely serve as highly conductive cores to support the redox active two-double MnO _2 shells with a highly electrolytic accessible surface area and provide reliable electrical connections to MnO _2 shells. The maximum specific capacitances of 937 F/g at a scan rate of 5 mV/s by cyclic voltammetry (CV) and 955 F/g at a current density of 1.5 A/g by chronopotentiometry were achieved for the MnO _2/Mn/MnO _2 sandwich-like nanotube arrays in solution of 1.0 M Na _2SO _4. The hybrid MnO _2/Mn/MnO _2 sandwich-like nanotube arrays exhibited an excellent rate capability with a high specific energy of 45 Wh/kg and specific power of 23 kW/kg and excellent long-term cycling stability (less 5% loss of the maximum specific capacitance after 3000 cycles). The high specific capacitance and charge-discharge rates offered by such MnO _2/Mn/MnO _2 sandwich-like nanotube arrays make them promising candidates for supercapacitor electrodes, combining high-energy densities with high levels of power delivery.
机译:我们演示了用于超级电容器的MnO _2 / Mn / MnO _2三明治状纳米管阵列的新型纳米结构的设计和制造。 MnO _2 / Mn / MnO _2夹心式纳米管中的结晶金属Mn层独特地充当高导电核,以具有高电解可及表面积的氧化还原活性两重MnO _2壳层,并提供与MnO _2的可靠电连接贝壳。对于MnO _2 / Mn / MnO,通过循环伏安法(CV)在5 mV / s的扫描速率下的最大比电容和在1.5 A / g的电流密度下通过计时伏安法(CV)的扫描速率达到955 F / g。 1.0 M Na _2SO _4溶液中的_2三明治状纳米管阵列。混合型MnO _2 / Mn / MnO _2夹心式纳米管阵列具有出色的倍率性能,具有45 Wh / kg的高比能和23 kW / kg的比功率,以及出色的长期循环稳定性(减少5%的损耗)。 3000次循环后的最大比电容)。此类MnO _2 / Mn / MnO _2夹心式纳米管阵列提供的高比电容和充放电速率使其成为超级电容器电极的有希望的候选者,将高能量密度与高水平的功率传递结合在一起。

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