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Titanium silicalite as a radical-redox mediator for high-energy-density lithium-sulfur batteries

机译:钛硅质岩radical-redox中介高能量密度锂硫电池

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Lithium-sulfur (Li-S) batteries are receiving intense interest owing to their high energy densities, cost effectiveness, and the natural abundance of sulfur. However, practical applications are still limited by rapid capacity decay caused by multielectron redox reactions and complex phase transformations. Here, we include commercially available titanium silicalite-1 (TS-1) in carbon/sulfur cathodes, to introduce strong chemical interactions between the lithium polysulfides (LiPS) and TS-1 in a working Li-S battery. In situ UV-visible spectroscopy together with other experimental results confirm that incorporation of TS-1 mediators enables direct conversion between S-8(2-) and S-3*(-) radicals during the discharge process, which effectively promotes the kinetic behaviors of soluble LiPS and regulates uniform nucleation and growth of solid sulfide precipitates. These features give our TS-1 engineered sulfur cathode an ultrahigh initial capacity of 1459 mA h g(-1) at 0.1C. Moreover, the system has an impressively high areal capacity (3.84 mA h cm(-2)) and long cycling stability with a high sulfur loading of 4.9 mg cm(-2). This novel and low-cost fabrication procedure is readily scalable and provides a promising avenue for potential industrial applications.
机译:锂硫电池(Li-S)接收浓厚的兴趣由于其高的能量密度、成本效益和自然大量的硫磺。应用程序快速能力仍然有限多电子氧化还原反应和衰减造成的复杂的转换阶段。商用silicalite-1钛(TS-1)碳/硫阴极,介绍强大的锂化学相互作用多硫化合物(嘴唇)和TS-1 Li-S工作电池。与其他实验结果证实整合TS-1介质使直接之间的转换S-8(2 -)和s 3 *(-)自由基在放电过程中,有效的促进可溶性嘴唇的动力学行为和调节的均匀成核和生长固体硫化物沉淀。我们TS-1工程硫阴极超高初始容量1459毫安h g(1)在0.1摄氏度。此外,系统有一个令人印象深刻的高区域容量(3.84 mA h厘米(2))和长循环稳定性高硫加载(2) 4.9毫克厘米。很容易扩展和制造过程提供了一个很有前景的潜在方式工业应用。

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