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Long-Life and High-Areal-Capacity Li S Batteries Enabled by a Light-Weight Polar Host with Intrinsic Polysulfide Adsorption

机译:轻质极性主体具有固有的多硫化物吸附能力,可实现长寿命和高容量锂电池

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Lithium-sulfur batteries are attractive electrochemical energy storage systems due to their high theoretical energy density and very high natural abundance of sulfur. However, practically, Li-S batteries suffer from short cycling life and low sulfur utilization, particularly in the case of high-sulfur-loaded cathodes. Here, we report on a light-weight nanoporous graphitic carbon nitride (high surface-area g-C3N4) that enables a sulfur electrode with an ultralow long-term capacity fade rate of 0.04% per cycle over 1500 cycles at a practical C/2 rate. More importantly, it exhibits good high-sulfur-loading areal capacity (up to 3.5 mAh cm(-2)) with stable cell performance. We demonstrate the strong chemical interaction of g-C3N4 with polysulfides using a combination of spectroscopic experimental studies and first-principles calculations. The 53.5% concentration of accessible pyridinic nitrogen polysulfide adsorption sites is shown to be key for the greatly improved cycling performance compared to that of N-doped carbons.
机译:锂硫电池由于其高的理论能量密度和非常高的自然硫含量而成为有吸引力的电化学储能系统。然而,实际上,Li-S电池具有短的循环寿命和低的硫利用率,特别是在高硫负载的阴极的情况下。在这里,我们报告了一种轻质纳米多孔石墨碳氮化物(高表面积g-C3N4),它使硫电极在实际C / 2下在1500个循环中具有超低的长期容量衰减率,每循环0.04%,超过1500个循环率。更重要的是,它具有良好的高硫负载面容量(高达3.5 mAh cm(-2))和稳定的电池性能。我们结合光谱实验研究和第一性原理计算证明了g-C3N4与多硫化物的强化学相互作用。与氮掺杂碳相比,可访问的吡啶基氮多硫化物吸附位点的53.5%浓度是大大提高循环性能的关键。

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