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A thin film silicon anode for Li-ion batteries having a very large specific capacity and long cycle life

机译:用于锂离子电池的薄膜硅阳极,具有非常大的特定容量和长循环寿命

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A thin film of Si was vacuum deposited onto a 30μm thick Ni foil from a source of n-type of Si, the film thickness examined being 200-1500 A. Li insertion/extraction evaluation was performed mainly with cyclic voltammetry (CV) and constant current charge/discharge cycling in propylene carbonate (PC) containing 1 M LiClO{sub}4 at ambient temperature. The cycleability and the Li accommodation capacity were found to depend on the film thickness. Thinner film gave larger accommodation capacity. A 500 A thick Si film gave a charge capacity over 3500 mAh g{sup}(-1) being maintained during 200 cycles under 2 C charge/discharge rate, while a 1500 A film revealed around 2200 mAh g{sup}(-1) during 200 cycles under 1 C rate. The initial charge loss could not be ignored but it could be reduced by controlling the deposition conditions.
机译:将Si的薄膜从N型Si的源沉积在30μm厚的Ni箔上,膜厚度为200-1500A。Li插入/提取评估主要用循环伏安法(CV)和常数进行在环境温度下在含有1M LiClO {Sub} 4的丙烯碳酸亚丙酯(PC)中的电流充电/放电。发现环状和锂容纳能力取决于薄膜厚度。更薄的薄膜给出了更大的容纳能力。在2℃充电/放电速率下,500厚的Si膜在200次循环期间保持超过3500mAh {sup}( - 1)的充电容量,而1500薄膜显示约2200mah}( - 1 )在1℃下的200个循环期间。初始电荷损耗无法忽略,但可以通过控制沉积条件来减少。

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