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Chinese knot-like electrode design for advanced Li-S batteries

机译:用于高级LI-S电池的中国结样电极设计

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Rational design of Li-S batteries requires efficient prevention of sulfur mobility and fast redox kinetics while accommodating the volumetric expansion of the sulfur cathode. Herein, we propose a multifunctional Chinese knot-like electrode design for advanced Li-S batteries. NiCo2S4 nanotubes are closely interwoven to form Chinese knot-like designs as a sulfur host. The unique interconnectivity of the 2D Chinese knot-like networks constructed by 1D nanostructured nanotubes enables fast electron transfer for high capacity. Furthermore, the hollow structure can simultaneously provide enough space for volumetric expansion of sulfur and confine lithium polysulfides (LiPSs) in the internal void space by structural encapsulation. Besides these, experimental and theoretical analysis demonstrates that NiCo2S4 can effectively capture the LiPSs and then catalyze the captured LiPSs into solid Li2S2/Li2S. More importantly, the transition between low-spin and high-spin of Co ions, induced by extra sulfur atoms from LiPSs, provides an electronic way to stabilize the adsorption system and reduce system energy, leading to the inhibition of the shuttle effect in Li-S batteries. As a result, the Chinese knot-like S@NiCo2S4 electrodes show a high capacity of 1348 mA h g(-1) at 0.1 C and long cycling life up to 1000 cycles with a slow capacity decay of 0.02% per cycle at 1 C. Even with a higher sulfur loading of 5 mg cm(-2), the electrodes still deliver good electrochemical performance.
机译:Li-S电池的合理设计需要有效地预防硫迁移率和快速氧化还原动力学,同时容纳硫阴极的体积膨胀。在此,我们提出了一种用于高级LI-S电池的多功能中国结样电极设计。 Nico2S4纳米管与硫宿主紧密交织在一起以形成中国结样设计。由1D纳米结构纳米管构成的2D中文结的网络的独特互连性能够快速电子转移以获得高容量。此外,通过结构封装,中空结构可以同时为硫和限制锂的锂多硫化物(唇缘)的体积膨胀(嘴唇)同时提供足够的空间。除此之外,实验和理论分析表明Nico2S4可以有效地捕获唇缘,然后将捕获的嘴唇催化成固体Li 2 S 2 / Li 2。更重要的是,由嘴唇的超硫原子诱导的低旋转和高旋旋的过渡,提供了一种稳定吸附系统并降低系统能量的电子方式,从而抑制了LI-中的梭效果S电池。结果,中文结的S @ Nico2S4电极在0.1c和长循环寿命下显示出1348 mA Hg(-1)的高容量,高达1000个循环,并且在1℃下每循环的慢容量衰减为0.02%。即使含硫含量较高,电极仍然提供良好的电化学性能。

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