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首页> 外文期刊>ACS Omega >A Convenient Synthesis Route for Co3O4 Hollow Microspheres and Their Application as a High Performing Anode in Li-Ion Batteries
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A Convenient Synthesis Route for Co3O4 Hollow Microspheres and Their Application as a High Performing Anode in Li-Ion Batteries

机译:Co 3 O 4 中空微球的便捷合成路线及其在锂离子电池中作为高性能阳极的应用

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摘要

A new, rapid, and cost-effective method for synthesizing hollow microspheres (HMSs) of cobalt oxide (Co_(3)O_(4)) using the phloroglucinol–formaldehyde gel route is reported here. Further, the synthesized hollow Co_(3)O_(4) microspheres were investigated as an anode material for Li-ion batteries. The Co_(3)O_(4) hollow spheres exhibited excellent electrochemical performance and cycling stability, for example, a capacity of 915 mA h g~(–1) was obtained at 1 C rate over 350 cycles. The material also exhibited good performance at high rates, viz., capacities of 500, 350, and 250 mA h g~(–1) at 10 C, 25 C, and 50 C, respectively, with good capacity retention over 500 cycles. The excellent electrochemical performance of Co_(3)O_(4) can be ascribed to the porous nanoarchitecture that provides a short diffusion length for Li~(+) ions and high electrolyte percolation in the porous structure. Additionally, the thin porous wall of the nanocages provides an effective way to overcome the issues associated with the volume change occurring during Li charge/discharge. The conversion of Co_(3)O_(4) into Co upon discharge was also probed by measuring the magnetic properties.
机译:本文报道了一种使用间苯三酚-甲醛凝胶途径合成氧化钴(Co_(3)O_(4))的空心微球(HMS)的新方法,该方法经济高效。此外,研究了合成的空心Co_(3)O_(4)微球作为锂离子电池的负极材料。 Co_(3)O_(4)空心球表现出优异的电化学性能和循环稳定性,例如,在350循环的1 C速率下获得的容量为915 mA h g〜(-1)。该材料在高速率下也表现出良好的性能,即分别在10 C,25 C和50 C下的容量分别为500、350和250 mA h g〜(-1),在500个循环中具有良好的容量保持率。 Co_(3)O_(4)的优异电化学性能可归因于多孔纳米结构,该结构为Li〜(+)离子提供了短的扩散长度,并在多孔结构中产生了较高的电解质渗透。另外,纳米笼的薄壁多孔壁提供了一种有效的方法来克服与在Li充电/放电期间发生的体积变化相关的问题。还通过测量磁性能来探究放电时Co_(3)O_(4)向Co的转化。

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