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首页> 外文期刊>Angewandte Chemie >Sulfur in Amorphous Silica for an Advanced Room-Temperature Sodium-Sulfur Battery
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Sulfur in Amorphous Silica for an Advanced Room-Temperature Sodium-Sulfur Battery

机译:用于高级室温硫磺电池的无定形二氧化硅中的硫磺

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摘要

The room-temperature (RT) Na/S battery is a promising energy storage system owing to suitable operating temperature, high theoretical energy density, and low cost. However, it has a poor cycle life and low reversible capacity. In this work, we report a long-life RT-Na/S battery with amorphous porous silica as a sulfur host. The sulfur is loaded into amorphous silica by a dipping method; the optimal sulfur loading is up to 73.48 wt %. Molecular dynamics simulation and first-principles calculations suggest that the complex pores, acting as micro-containers and the formation of Na-O chemical bonds between amorphous silica and sodium polysulfide, give the electrodes a strong ability to inhibit sodium polysulfide shuttle. This would give rise to effectively avoiding the loss of active sulfur, corresponding to a superior capacity and an excellent cyclability even at 10 A g(sulfur)(-1) (nearly 100 % coulomb efficiency and high reversible capacity of 955.8 mAh g(sulfur)(-1) after 1460 cycles).
机译:室温钠硫电池具有工作温度适宜、理论能量密度高、成本低等优点,是一种很有前途的储能系统。然而,它的循环寿命差,可逆容量低。在这项工作中,我们报告了一种以无定形多孔二氧化硅为硫主体的长寿命RT-Na/S电池。通过浸渍法将硫装入无定形二氧化硅中;最佳硫含量为73.48 wt%。分子动力学模拟和第一性原理计算表明,作为微容器的复杂孔隙以及无定形二氧化硅和多硫化钠之间形成的Na-O化学键,使电极具有很强的抑制多硫化钠穿梭的能力。这将有效避免活性硫的损失,对应于在10A g(硫)-1(1460次循环后接近100%的库仑效率和955.8 mAh g(硫)-1)下的优越容量和极好的可循环性。

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