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Rodlike Sb2Se3 Wrapped with Carbon: The Exploring of Electrochemical Properties in Sodium-Ion Batteries

机译:用碳包裹的棒状SB2Se3:钠离子电池中电化学性能的探索

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摘要

One-dimensional Sb2Se3/C rods are prepared through self-assembly by inducing anisotropy, and their corresponding sodium storage behaviors are evaluated, presenting excellent electrochemical performances with superior cycling stability and rate capability. Sb2Se3 delivers a high initial charge capacity of 657.6 mA h g(-1) at a current density of 0.2 A g(-1) between 2.5 and 0.01 V. After 100 cycles, the reversible capacity of Sb2Se3/C is still retained at 485.2 mA h g(-1). Even at a high rate current density of 2.0 A g(-1), the charge capacity is still retained at 311.5 mA h g(-1). Through the analysis of cyclic voltammetry and in situ electrochemical impedance spectroscopy, the in-depth understanding of high rate performances is explored effectively. Briefly, the sodium storage performance of Sb2Se3/C is observably enhanced, benefiting from the 1D structure and the introduction of a carbon layer with robust structure stability and conductivity.
机译:通过诱导各向异性通过自组装制备一维SB2Se3 / C棒,并评估它们相应的钠储存行为,呈现出具有优异的循环稳定性和速率能力的优异的电化学性能。 SB2Se3在2.5和0.01V的电流密度下提供657.6 mA Hg(-1)的高初始充电容量,在2.5和0.01V之间。在100次循环后,Sb2se3 / c的可逆容量仍然保持在485.2 mA HG(-1)。 即使在高速速率电流密度为2.0Ag(-1),仍然在311.5 mA H g(-1)中仍然保持电荷容量。 通过分析循环伏安法和原位电化学阻抗光谱,有效地探讨了对高速率性能的深入了解。 简而言之,可观察地增强SB2SE3 / C的钠储存性能,从1D结构和具有鲁棒结构稳定性和导电性的碳层引入碳层。

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