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首页> 外文期刊>Applied Surface Science >Fabrication of SiOx Ultra-Fine Nanoparticles by IR nanosecond laser ablation as anode materials for lithium ion battery
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Fabrication of SiOx Ultra-Fine Nanoparticles by IR nanosecond laser ablation as anode materials for lithium ion battery

机译:红外纳秒激光烧蚀法制备SiOx超细纳米粒子作为锂离子电池负极材料

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Silicon based materials have been suggested as promising alternative anode materials for their high higher theoretical capacity and lower working potential. As a novel method of preparing ultrafine oxide nanoparticles, laser ablation method provides an important way for the preparation of anode materials for lithium ion batteries. When a silicon chip was irradiated by a flat-top high energy infrared laser, large yellow ultrafine SiOx nanoparticles with high oxygen content were produced at the edge of the ablation area due to the strong heat interaction. The resulting sample had a Si: O atom ratio of 1: 1.3. The results suggested that the ultrafine nanoparticles were composed of two phases: SiO1.35 and SiO0.93. When the synthesized SiOx ultrafine nanoparticles were utilized as anode material for lithium batteries (LIBs), the specific capacity of the electrode gradually increased at a current density of 0.2 A g(-1), and delivered a maximum of 438 mA h g(-1) at the 451th cycle before it stabilized. In the following cycles, there was only sight degradation for specific capacity, and the specific capacity of the electrode was maintained at 344 mA h g(-1) after 800 cycles. (C) 2017 Elsevier B.V. All rights reserved.
机译:硅基材料因其较高的较高理论容量和较低的工作潜力而被认为是有希望的替代阳极材料。作为一种制备超细氧化物纳米粒子的新方法,激光烧蚀法为制备锂离子电池负极材料提供了重要途径。当用平顶高能红外激光照射硅芯片时,由于强烈的热相互作用,在烧蚀区域的边缘产生了具有高氧含量的大的黄色超细SiOx纳米颗粒。所得样品的Si∶O原子比为1∶1.3。结果表明,超细纳米颗粒由两相组成:SiO1.35和SiO0.93。当将合成的SiOx超细纳米颗粒用作锂电池(LIBs)的负极材料时,电极的比容量在0.2 A g(-1)的电流密度下逐渐增加,并且最大释放量为438 mA hg(-1) )在稳定之前的第451个周期。在随后的循环中,仅比容量发生了视觉下降,并且在800个循环后,电极的比容量保持在344 mA h g(-1)。 (C)2017 Elsevier B.V.保留所有权利。

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