首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The synthesis and electrochemical properties of low-crystallinity iron silicate derived from reed leaves as a supercapacitor electrode material
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The synthesis and electrochemical properties of low-crystallinity iron silicate derived from reed leaves as a supercapacitor electrode material

机译:从簧片叶片衍生自簧片叶片作为超级电容器电极材料的合成和电化学性能

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摘要

The design and preparation of electrode materials with excellent performance is particularly important due to the current global scarcity of energy supplies, especially those using sustainable and renewable materials. In this work, it is first proposed to apply iron silicate (FeSi), which is synthesized using environmentally friendly biomass as a raw material, as an electrode material for supercapacitors (SCs). FeSi is derived from the calcination of reed leaves (RLs) in combination with a hydrothermal method, and spherical FeSi retains the porosity of the RL precursors and shows remarkable electrochemical performance. The specific capacitance of FeSi as a SC electrode can reach 575 F g(-1) at 0.5 A g(-1) in the voltage window from -1 to -0.5 V. Simultaneously, the FeSi electrode exhibits favorable cycling stability with 76% capacitance retention after 10 000 cycles and outstanding electrical conductivity. This finding provides a novel method of preparing a kind of untapped electrode material, porous FeSi nanoparticles derived from RLs, and the resulting FeSi material shows enormous potential for energy storage via high-performance SCs.
机译:由于目前全球能源供应短缺,特别是使用可持续和可再生材料的能源供应短缺,具有优异性能的电极材料的设计和制备尤为重要。在这项工作中,首次提出将以环保生物质为原料合成的硅酸铁(FeSi)用作超级电容器(SCs)的电极材料。FeSi由芦苇叶(RLs)的煅烧和水热法结合而成,球形FeSi保留了RL前驱体的孔隙率,并显示出显著的电化学性能。在-1到-0.5V的电压窗口中,作为SC电极的FeSi在0.5Ag(-1)下的比电容可以达到575F g(-1)。同时,FeSi电极在10000次循环后表现出良好的循环稳定性,电容保持率为76%,导电性优异。这一发现提供了一种新的方法来制备一种未开发的电极材料,即从RLs衍生的多孔FeSi纳米颗粒,由此产生的FeSi材料显示出通过高性能SCs进行能量存储的巨大潜力。

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