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首页> 外文期刊>Angewandte Chemie >A Promising Carbon/g-C3N4 Composite Negative Electrode for a Long-Life Sodium-Ion Battery
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A Promising Carbon/g-C3N4 Composite Negative Electrode for a Long-Life Sodium-Ion Battery

机译:用于长寿命钠离子电池的有前途的碳/ G-C3N4复合负极

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摘要

2D graphitic carbon nitride (g-C3N4) nanosheets are a promising negative electrode candidate for sodium-ion batteries (NIBs) owing to its easy scalability, low cost, chemical stability, and potentially high rate capability. However, intrinsic g-C3N4 exhibits poor electronic conductivity, low reversible Na-storage capacity, and insufficient cyclability. DFT calculations suggest that this could be due to a large Na+ ion diffusion barrier in the innate g-C3N4 nanosheet. A facile one-pot heating of a mixture of low-cost urea and asphalt is strategically applied to yield stacked multilayer C/g-C3N4 composites with improved Na-storage capacity (about 2 times higher than that of g-C3N4, up to 254 mAh g(-1)), rate capability, and cyclability. A C/g-C3N4 sodium-ion full cell (in which sodium rhodizonate dibasic is used as the positive electrode) demonstrates high Coulombic efficiency (ca. 99.8 %) and a negligible capacity fading over 14 000 cycles at 1 A g(-1).
机译:由于其容易的可扩展性,低成本,化学稳定性和潜在的高速率能力,2D石墨碳氮化物(G-C3N4)纳米片是用于钠离子电池(NIBS)的承诺负极候选者。 然而,内在的G-C3N4表现出差的电子导电性,低可逆Na储存容量,并且可循环性不足。 DFT计算表明,这可能是由于先天G-C3N4纳米片中的大Na +离子扩散屏障。 低成本尿素和沥青混合物的容易的单壶加热是策略性的应用,以产生具有改善的NA储存容量的堆叠多层C / G-C3N4复合材料(高达254的G-C3N4高约2倍 MAH G(-1)),速率能力和可靠性。 AC / G-C3N4钠离子全细胞(其中使用氟硝酸钠DiBasic用作正电极)表明了高库仑效率(约99.8%),并且可以忽略于1Ag(-1)的可忽略量超过14 000次循环 。

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