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Improved electrochemical behavior of W-coated SiO-graphite composite anode in lithium-ion secondary battery

机译:锂离子二次电池中W包覆SiO-石墨复合阳极的电化学行为改善

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The electrochemical performance of a W-coated SiO-graphite composite anode was evaluated in Li-ion secondary coin cells. Tungsten was coated onto the SiO-graphite composite electrode by physical vapor deposition. The layered structure of the W-coated electrode was imaged using transmission electron microscopy and the uniformity of the coating was confirmed by electron probe microanalysis. In coin cells, the W-coated electrode showed a higher retention capacity and discharge capacity than the uncoated electrode at a C rate of 0.5 C after 100 cycles. The discharge capacity of the coated cell was 566 mAh g(-1) after the 1st cycle and 358 mAh g(-1) after the 100th cycle at a C rate of 0.5 C, whereas that of the uncoated cell was 517 mAh g(-1) after the 1st cycle and 269 mAh g(-1) after the 100th cycle. The retention capacity of the coated cell was 63.2 % after 100 cycles, whereas that of the uncoated cell was 52.0 %. A comparison of the W-coated and uncoated electrodes after 100 cycles revealed that the W layer, which has superior conductivity and mechanical properties, improved the electrochemical performance of the electrode. Impedance analysis also confirmed that the W coating enhanced the cell performance.
机译:在锂离子二次纽扣电池中评估了W涂层SiO-石墨复合阳极的电化学性能。通过物理气相沉积将钨涂覆在SiO-石墨复合电极上。使用透射电子显微镜对W涂层电极的层状结构进行成像,并通过电子探针显微分析确认涂层的均匀性。在纽扣电池中,经过100次循环后,在0.5 C的C速率下,W涂层电极比未涂层电极具有更高的保持能力和放电能力。涂膜电池在第一个循环后的放电容量为566 mAh g(-1),第100次循环后在0.5 C的放电速率下为358 mAh g(-1),而未涂膜电池的放电容量为517 mAh g(-1)。第一次循环后为-1),第100次循环后为269 mAh g(-1)。在100次循环后,涂覆的电池的保留容量为63.2%,而未涂覆的电池的保留容量为52.0%。比较100次循环后的W涂层电极和未涂层的电极,发现具有优越的导电性和机械性能的W层改善了电极的电化学性能。阻抗分析还证实了W涂层增强了电池性能。

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