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Uniquely structured iron hydroxide-carbon nanospheres with yolk-shell and hollow structures and their excellent lithium-ion storage performances

机译:具有蛋黄壳和空心结构的独特结构的氢氧化铁 - 碳纳米球及其优异的锂离子储存性能

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Rationally designed transition metal compound-carbon composites have been widely studied as anode materials for high-efficiency alkali metal-ion batteries. In this study, iron hydroxide-carbon composite nanospheres with yolk-shell and hollow structures were successfully synthesized by a facile in-situ precipitation method using NaOH solution to confirm the effects of morphological control as well as compositing with carbon material on the electrochemical properties for lithium-ion storage. To prepare the yolk-shell and hollow structured iron nitratecarbon composite precursor nanospheres, "vacuum heat-treatment" and "drop-and-dry" processes were employed, respectively. The graphitic carbon matrix and internal void space provided electronic conductivity and structural durability, respectively, during the repeated discharge and charge processes. Correspondingly, when applied as anodes for lithium-ion batteries, the yolk-shell and hollow structured iron hydroxide-carbon nanospheres delivered extraordinary rate performances and long-term cycle stabilities, revealing reversible discharge capacities of 504 and 442 mA h g(-1) for 400 cycles at a current density of 5 A g(-1), respectively. In addition, based on the results of various in-situ and ex-situ analyses, the reversible conversion reaction of iron hydroxide with lithium ions could be approximated by the following reaction: Fe(OH)(3) + 3Li(+) + 3e(-) - Fe + 3Li (OH).
机译:理性设计的过渡金属化合物 - 碳复合材料已被广泛研究为高效碱金属离子电池的阳极材料。在本研究中,通过使用NaOH溶液的容易原位沉淀方法成功地合成了氢氧化铁 - 碳复合纳米球和中空结构,以确认形态对照的影响以及用碳材料对电化学性能的影响锂离子储存。为了制备蛋白质 - 壳和中空结构铁,硝基镍复合前体纳米球,“真空热处理”和“滴加”过程。在重复的放电和充电过程中,石墨碳矩阵和内部空隙空间分别提供了电子导电性和结构耐久性。相应地,当施加作为锂离子电池的阳极时,蛋黄壳和中空结构的氢氧化铁 - 碳纳米球提供了非凡的速率性能和长期循环稳定性,揭示了504和442 mA Hg(-1)的可逆排放容量分别以5Ag(-1)的电流密度为400个循环。此外,基于各种原位和前原位分析的结果,通过以下反应:Fe(OH)(3)+ 3LI(+)+ 3e,可以近似氢氧化氢离子的可逆转化反应。 ( - )< - > Fe + 3li(OH)。

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