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首页> 外文期刊>Journal of Solid State Chemistry >Controlled synthesis of MnSn(OH) _6/graphene nanocomposites and their electrochemical properties as capacitive materials
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Controlled synthesis of MnSn(OH) _6/graphene nanocomposites and their electrochemical properties as capacitive materials

机译:MnSn(OH)_6 /石墨烯纳米复合材料的受控合成及其作为电容材料的电化学性能

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We report the synthesis of novel MnSn(OH) _6/graphene nanocomposites produced by a co-precipitation method and their potential application for electrochemical energy storage. The hydroxide decorated graphene nanocomposites display better performance over pure MnSn(OH) _6 nanoparticles because the graphene sheets act as conductive bridges improving the ionic and electronic transport. The crystallinity of MnSn(OH) _6 nanoparticles deposited on the surface of graphene sheets also impacts the capacitive properties as electrodes. The maximum capacitance of 31.2 F/g (59.4 F/g based on the mass of MnSn(OH) _6 nanoparticles) was achieved for the sample with a low degree of crystallinity. No significant degradation of capacitance occurred after 500 cycles at a current density of 1.5 A/g in 1 M Na _2SO _4 aqueous solution, indicating an excellent electrochemical stability. The results serve as an example demonstrating the potential of integrating highly conductive graphene networks into binary metal hydroxide in improving the performance of active electrode materials for electrochemical energy storage applications.
机译:我们报告了通过共沉淀法生产的新型MnSn(OH)_6 /石墨烯纳米复合材料的合成及其在电化学储能中的潜在应用。氢氧化物修饰的石墨烯纳米复合材料比纯MnSn(OH)_6纳米颗粒显示出更好的性能,因为石墨烯片充当导电桥,改善了离子和电子的传输。沉积在石墨烯片表面的MnSn(OH)_6纳米颗粒的结晶度也会影响作为电极的电容性能。对于结晶度较低的样品,最大电容为31.2 F / g(基于MnSn(OH)_6纳米粒子的质量为59.4 F / g)。在1 M Na _2SO _4水溶液中电流密度为1.5 A / g的情况下,经过500次循环后,电容没有发生显着下降,这表明电化学稳定性极好。该结果作为一个实例证明了将高导电性石墨烯网络集成到二元金属氢氧化物中的潜力,可以改善用于电化学储能的活性电极材料的性能。

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