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首页> 外文期刊>RSC Advances >Confined germanium nanoparticles in an N-doped carbon matrix for high-rate and ultralong-life lithium ion batteries
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Confined germanium nanoparticles in an N-doped carbon matrix for high-rate and ultralong-life lithium ion batteries

机译:N掺杂碳基质中的受限锗纳米颗粒,用于高倍率和超长寿命锂离子电池

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摘要

In this study, a relatively simple and direct method is used to prepare germanium nanoparticles (Ge NPs) embedded in the pore tunnels of an N-doped mesoporous carbon matrix. In the Ge/CMK-3 nanocomposite, the highly ordered porous structure and large pore volume guarantee a sufficient Ge loading and buffer the large volume changes of Ge during the discharge/charge cycles. More specifically, the mesoporous carbon matrix can supply sufficient pathways for Li+ and electron transport to the encapsulated nanometer-sized Ge, as well as restrain the agglomeration and growth of Ge during the crystallization process. Accordingly, the electrode of Ge/CMK-3 attained a capacity as high as 755.7 mA h g(-1) at 500 mA g(-1) after 420 cycles with a capacity retention of 93.3% based on the 11th cycle. The study shows that the electrochemical properties of Ge/CMK-3 are significantly improved compared to that of the bulk Ge anode, and it demonstrates that Ge/CMK-3 could potentially show promise as an anode material for energy storage.
机译:在这项研究中,使用一种相对简单直接的方法来制备嵌入在N掺杂介孔碳基体的孔道中的锗纳米颗粒(Ge NPs)。在Ge / CMK-3纳米复合材料中,高度有序的多孔结构和大孔容量确保了足够的Ge含量,并在放电/充电周期中缓冲了Ge的大体积变化。更具体地,中孔碳基质可以提供足够的途径用于Li +和电子传输到包封的纳米级Ge,以及在结晶过程中抑制Ge的团聚和生长。因此,Ge / CMK-3的电极在420个循环后在500 mA g(-1)处达到了755.7 mA h g(-1)的容量,基于第11个循环的容量保持率为93.3%。研究表明,与块状Ge阳极相比,Ge / CMK-3的电化学性能得到了显着改善,并且表明Ge / CMK-3有望显示出作为储能阳极材料的前景。

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