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One-step synthesis of a silicon/hematite@carbon hybrid nanosheet/silicon sandwich-like composite as an anode material for Li-ion batteries

机译:一步法合成硅/赤铁矿@碳杂化纳米片/硅三明治状复合材料作为锂离子电池的负极材料

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摘要

Silicon and hematite, both important functional materials with high theoretical capacity, have been intensively investigated separately for application as anode materials in lithium ion batteries (LIBs). The main challenges associated with these anode materials are their low electronic conductivity and structural degradation caused by large volume expansion during cycling, which are not tolerable for future LIBs with high energy density and large power output. Active particles anchored on a porous conductive skeleton are widely used for improving the electrochemical performance of silicon as well as that of hematite. Herein, we develop a novel-structured carbon-silicon-hematite anode material via a single-step technique that addresses these problems. In the resultant architecture, silicon nanoparticles are sandwiched between the iron-oxide-embedded porous carbon sheets. The flexible and conductive carbon sheets improve the conductivity and accommodate the volume changes of the embedded hematite and silicon nanoparticles, and thus maintain the structural and electrical integrity. Meanwhile, the void space between the carbon layers leaves enough room for the expansion and contraction of silicon during the lithiation and delithiation processes. High capacity (∼1980 mA h g-1 at 750 mA g-1) and long cycle life (250 cycles) have been achieved for this sandwich-like carbon-silicon-hematite electrode.
机译:硅和赤铁矿,这两种具有高理论容量的重要功能材料,已被广泛地研究用作锂离子电池(LIB)的阳极材料。与这些阳极材料相关的主要挑战是它们的低电导率和循环过程中大体积膨胀引起的结构退化,这对于具有高能量密度和大功率输出的未来LIB来说是无法忍受的。锚固在多孔导电骨架上的活性颗粒被广泛用于改善硅以及赤铁矿的电化学性能。在这里,我们通过解决这些问题的单步技术开发了一种新型结构的碳-硅-赤铁矿负极材料。在最终的体系结构中,硅纳米颗粒夹在嵌入氧化铁的多孔碳片之间。柔性导电碳片提高了导电性并适应了嵌入的赤铁矿和硅纳米粒子的体积变化,从而保持了结构和电气完整性。同时,碳层之间的空隙为锂化和脱锂过程中的硅膨胀和收缩留有足够的空间。这种夹层状碳-硅-赤铁矿电极具有高容量(在750 mA g-1时约为1980 mA h g-1)和长循环寿命(250个循环)。

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