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A hyperaccumulation pathway to three-dimensional hierarchical porous nanocomposites for highly robust high-power electrodes

机译:高强度大功率电极的三维层次多孔纳米复合材料的超积累途径

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摘要

Natural plants consist of a hierarchical architecture featuring an intricate network of highly interconnected struts and channels that not only ensure extraordinary structural stability, but also allow efficient transport of nutrients and electrolytes throughout the entire plants. Here we show that a hyperaccumulation effect can allow efficient enrichment of selected metal ions (for example, Sn2+, Mn2+) in the halophytic plants, which can then be converted into three-dimensional carbon/metal oxide (3DC/MOx) nanocomposites with both the composition and structure hierarchy. The nanocomposites retain the 3D hierarchical porous network structure, with ultrafine MOx nanoparticles uniformly distributed in multi-layers of carbon derived from the cell wall, cytomembrane and tonoplast. It can simultaneously ensure efficient electron and ion transport and help withstand the mechanical stress during the repeated electrochemical cycles, enabling the active material to combine high specific capacities typical of batteries and the cycling stability of supercapacitors.
机译:天然植物由具有高度互连的支杆和通道的错综复杂网络的分级体系结构组成,不仅可以确保非凡的结构稳定性,而且还可以在整个植物中有效地运输养分和电解质。在这里,我们表明,过度积累效应可以使盐生植物中的选定金属离子(例如,Sn 2 + ,Mn 2 + )有效富集,从而可以转换为具有组成和结构层次的三维碳/金属氧化物(3DC / MOx)纳米复合材料。纳米复合材料保留了3D分层多孔网络结构,超细MOx纳米颗粒均匀分布在源自细胞壁,细胞膜和液泡膜的多层碳中。它可以同时确保有效的电子和离子传输,并在反复的电化学循环中帮助承受机械应力,使活性材料能够兼具典型的电池高比容量和超级电容器的循环稳定性。

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