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An interlayer composed of a porous carbon sheet embedded with TiO(2)nanoparticles for stable and high rate lithium-sulfur batteries

机译:多孔碳板组成的一个夹层嵌入TiO(2)稳定的纳米粒子高锂硫电池

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The shuttling of lithium polysulfides (LiPSs) in lithium-sulfur (Li-S) batteries results in low sulfur utilization and fast capacity decay, hindering their practical applications. Constructing an interlayer is an efficient way to block the LiPS shuttling, but maintaining a low Li ion diffusion resistance with such an interlayer is hard to achieve. Herein, a thin porous carbon nanosheet embedded with TiO(2)nanoparticles (denoted PCNS-TiO2) was used to fabricate an interlayer on the separator, which effectively solves the above problem. The PCNS-TiO(2)was prepared by using the Ti(3)C(2)T(x)MXene as the two-dimensional (2D) template directing the porous carbon sheet formation, and the Ti(3)C(2)T(x)transformed into TiO(2)nanoparticles embedded in the PCNS. The decomposition of the MXene eliminates the ion blocking effect by the 2D nanosheet structure. The thin and hierarchical porous structure allows fast Li ion diffusion across the interlayer, and at the same time, the porous structure and the strong adsorption ability of TiO(2)effectively block the polysulfide diffusion. Thus, the Li-S battery with this interlayer shows good rate performance with a high capacity of 627 mA h g(-1)at 2 C. Meanwhile, stable cycling performance is also achieved, showing a low capacity decay of 0.063% per cycle after 300 cycles at 0.5 C.
机译:多硫化锂的穿梭(嘴唇)锂硫电池(Li-S)导致低硫利用率和容量衰减快,阻碍他们的实际应用。构建一个夹层是一个有效的方法块嘴唇穿梭,但保持一个低李与这样一个离子扩散阻力层间很难实现。多孔碳nanosheet嵌入TiO(2)使用纳米粒子(PCNS-TiO2表示)制造一个夹层分隔符,它有效地解决了上述问题。PCNS-TiO(2)是通过使用准备的Ti (3) C (2) T (x) MXene作为二维(2 d)模板指导多孔碳板形成,Ti (3) C (2) T (x)转换成PCNS TiO(2)纳米粒子嵌入。分解的MXene消除了离子2 d nanosheet阻塞效应的结构。薄和分层多孔结构允许李在层间离子扩散快,和与此同时,和多孔结构有效吸附能力强的TiO (2)块聚硫扩散。电池这个夹层显示良好的速度性能高容量627毫安的hg(1)在2 c。与此同时,稳定的骑自行车性能也达到了,显示低300年后每循环容量衰减0.063%周期在0.5摄氏度。

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