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A surfactant-thermal method to prepare crystalline thioantimonate for high-performance lithium-ion batteries

机译:表面活性剂-热法制备高性能锂离子电池的硫代锑酸盐结晶

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Rechargeable lithium-ion batteries (LIBs) have attracted great attention in various applications. However, high energy density is still a challenge for next-generation lithium ion batteries. Therefore, searching for novel electrode materials to address this issue is highly desirable. In this report, we employed a surfactant-thermal method to prepare a novel 1D crystalline thioantimonate [NH(CH3)2][Sb4S5(S3)]. After grinding for 10 min using a mortar, [NH(CH3)2][Sb4S5(S3)] presented an ultrathin nanosheet morphology (around 20 nm in thickness and several micrometers in lateral dimension). Employed as an anode material for lithium ion batteries, the nano-sized crystalline thioantimonate shows a high reversible specific capacity of 568 mA h g-1 over 50 cycles at a current density of 0.1 A g-1 and an excellent rate capability of 301 mA h g-1 at a current density of 5 A g-1. Our research suggests that crystalline thioantimonate could have great potential applications in high performance Li-ion batteries.
机译:可充电锂离子电池(LIB)在各种应用中引起了极大的关注。然而,高能量密度仍然是下一代锂离子电池的挑战。因此,非常需要寻找新颖的电极材料来解决这个问题。在此报告中,我们采用了表面活性剂-热法制备了新型一维结晶硫代锑酸盐[NH(CH3)2] [Sb4S5(S3)]。用研钵研磨10分钟后,[NH(CH3)2] [Sb4S5(S3)]呈现出超薄的纳米片形态(厚度约20 nm,横向尺寸为几微米)。被用作锂离子电池的负极材料,纳米级硫代锑酸结晶在50个循环中显示出568 mA h g-1的高可逆比容量,电流密度为0.1 A g-1,并且具有301 mA的出色倍率能力h g-1在5 A g-1的电流密度下。我们的研究表明,结晶的硫代锑酸盐在高性能锂离子电池中可能具有巨大的潜在应用。

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