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首页> 外文期刊>RSC Advances >Self-crosslink assisted synthesis of 3D porous branch-like Fe3O4/C hybrids for high-performance lithium/sodium-ion batteries
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Self-crosslink assisted synthesis of 3D porous branch-like Fe3O4/C hybrids for high-performance lithium/sodium-ion batteries

机译:自交联辅助合成高性能锂/钠离子电池用3D多孔分支状Fe 3 O 4 / C杂化物

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摘要

A facile and effective self-crosslink assisted strategy is developed to fabricate 3D porous branch-like Fe3O4/C hybrids as high-performance anode materials for lithium ion batteries (LIBs) and sodium ion batteries (NIBs). Trivalent iron ions (Fe3+) are used to directly crosslink with biopolymer alginate to form nanoscale branch-like Fe-alginate hybrid nanostructures, which are converted to porous Fe3O4/C hybrids via a simple carbonization process. The resulting hybrids feature ultrafine active nanoparticles (~5 nm), wrapping by thin graphitic layers, hierarchically nanoscale porous channels, and interconnected robust graphitic frameworks. Applying these in the anodes of LIBs, these structural features enable the hybrids to deliver high capacities of 974 and 570 mA h g?1 at 0.1 and 2 A g?1, respectively, and excellent cyclic stability with capacity retention of 98% after 200 cycles at 0.1 A g?1. In NIBs, reasonable capacities of 339 and 138 mA h g?1 are obtained at 0.05 and 5 A g?1, respectively. The high performance demonstrates the promising potential of the hybrids in next generation anodes for LIBs and NIBs.
机译:开发了一种简便有效的自交联辅助策略,以制备3D多孔分支状Fe 3 O 4 / C混合材料可作为锂离子电池(LIB)和钠离子电池(NIB)的高性能阳极材料。三价铁离子(Fe 3 + )用于与生物聚合物藻酸盐直接交联,形成纳米级分支状Fe-藻酸盐杂化纳米结构,该结构转变为多孔的Fe 3 O 4 / C杂种通过简单的碳化过程。所得的杂种具有超细活性纳米颗粒(〜5 nm),被薄石墨层包裹,分层的纳米级多孔通道和相互连接的坚固石墨骨架。将它们应用于LIB的阳极,这些结构特征使混合动力车能够以0.1和2 A g <的功率提供974和570 mA hg ?1 的高容量。分别具有sup>?1 和优异的循环稳定性,在0.1 A g ?1 下200次循环后容量保持率达98%。在NIB中,在0.05和5 A g ?1 ?1 容量>。高性能证明了混合动力在LIB和NIB的下一代阳极中的发展潜力。

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