首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Rational design of uniformly embedded metal oxide nanoparticles into nitrogen-doped carbon aerogel for high-performance asymmetric supercapacitors with a high operating voltage window
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Rational design of uniformly embedded metal oxide nanoparticles into nitrogen-doped carbon aerogel for high-performance asymmetric supercapacitors with a high operating voltage window

机译:合理地将金属氧化物纳米颗粒均匀地嵌入掺氮碳气凝胶中,以用于具有高工作电压窗口的高性能非对称超级电容器

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摘要

We report the design of a high-performance asymmetric supercapacitor (ASC) based on manganese monoxide/carbon aerogel (MnO/NCA) composites as the positive electrode and iron oxide/carbon aerogel (Fe2O3/NCA) composites as the negative electrode. The prepared MnO/NCA hybrid composites display a highly interconnected network structure with ultrathin MnO nanoparticles uniformly embedded into the 3D nitrogen-doped carbon matrix. Because of the synergistic effects of the highly conductive carbon aerogel and highly pseudocapacitive metal oxides, the hybrid MnO/NCA electrode exhibits highly effective surface area, greatly enhanced ion transportation, and excellent electrochemical performance, in comparison with other MnOx-based electrode materials. Matching it with the Fe2O3/NCA cathode, the novel ASC devices can achieve a high voltage window of 2.0 V, delivering a remarkable energy density of 48.67 W h kg(-1) at a power density of 1000 W kg(-1) and still retains 27.39 W h kg(-1) at a high power density of 10 kW kg(-1), consequently giving rise to stable cycling performance. These encouraging results will provide a fresh route for the design and fabrication of metal oxide@carbon aerogel materials for application in next-generation storage systems.
机译:我们报告了基于一氧化锰/碳气凝胶(MnO / NCA)复合材料作为正极和氧化铁/碳气凝胶(Fe2O3 / NCA)复合材料作为负极的高性能不对称超级电容器(ASC)的设计。制备的MnO / NCA杂化复合材料显示出高度互连的网络结构,超薄MnO纳米颗粒均匀地嵌入3D氮掺杂碳基质中。由于高导电性碳气凝胶和高拟电容性金属氧化物的协同作用,与其他MnOx基电极材料相比,MnO / NCA杂化电极具有高效的表面积,大大增强的离子传输能力和出色的电化学性能。与Fe2O3 / NCA阴极相匹配,新型ASC器件可实现2.0 V的高压窗口,以1000 W kg(-1)的功率密度提供48.67 W h kg(-1)的出色能量密度。在10 kW kg(-1)的高功率密度下仍可保持27.39 W h kg(-1),因此具有稳定的循环性能。这些令人鼓舞的结果将为设计和制造用于下一代存储系统的金属氧化物碳气凝胶材料提供一条新途径。

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