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High capacity and long cycle life silicon anode for Li-ion battery

机译:用于锂离子电池的高容量和长寿命的硅阳极

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A silicon film was deposited on a Ni or Cu foil in vacuum up to a thickness of 4 mu m and the Li insertion/extraction behaviour was evaluated under constant current charge/discharge in an electrolyte solution of propylene carbonate containing 1 M LiClO_4. The surface of a 30 mu m thick Ni foil was roughened by etching with FeCl_3. The Li insertion/extraction performance was strongly dependent on the roughness factor. A thick silicon film is necessary for practical application. However, the cycle performance as well as the Li accommodation capacity was markedly depressed when the film thickness was increased. We found that the roughening of the substrate surface was a key factor for attaining good performance with a thick film. Surface roughening was found to be very effective, but the best performance was obtained by the use of an electrolytically deposited Cu foil on which a silicon film was vacuum-deposited rapidly.
机译:在真空中将硅膜沉积到厚度为4μm的Ni或Cu箔上,并在包含1 M LiClO_4的碳酸亚丙酯的电解质溶液中,在恒定电流充电/放电下评估Li的插入/萃取行为。通过用FeCl_3蚀刻使30μm厚的Ni箔的表面粗糙化。 Li的插入/提取性能在很大程度上取决于粗糙度因子。实际应用中需要厚的硅膜。然而,当膜厚度增加时,循环性能以及Li容纳容量显着降低。我们发现,基板表面的粗糙化是获得厚膜良好性能的关键因素。发现表面粗糙化是非常有效的,但是通过使用电解沉积的Cu箔可获得最佳性能,在其上快速真空沉积硅膜。

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