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首页> 外文期刊>Journal of Electronic Materials >Anodized Macroporous Silicon Anode for Integration of Lithium-Ion Batteries on Chips
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Anodized Macroporous Silicon Anode for Integration of Lithium-Ion Batteries on Chips

机译:用于芯片上锂离子电池集成的阳极氧化大孔硅阳极

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Macroporous silicon membranes were investigated as anodes for potential integration of lithium-ion batteries on chips. Free-standing and partially etched porous silicon membranes were fabricated from a p-type silicon wafer by using electrochemical anodization. Free-standing porous membranes were achieved with high aspect ratio of 40, average pore size of 1 μm, porosity around ~70%, and wall thickness of less than 0.1 μm. Lithium storage capacity was quantified by galvanostatic discharge/charge measurements, showing specific capacity of 1425 mAh/g with Coulombic efficiency of 81% in the first discharge/charge cycle. The discharge/charge capacity was reduced as the charge rate increased, and the capacity fading was much less pronounced at high charge rate. Morphological analyses showed an increase of surface roughness and reduction of porosity after lithiation/delithiation cycling.
机译:研究了大孔硅膜作为锂离子电池在芯片上潜在集成的阳极。通过使用电化学阳极氧化,从p型硅晶片上制造了独立式且部分蚀刻的多孔硅膜。获得了独立的多孔膜,其高长径比为40,平均孔径为1μm,孔隙率约为〜70%,壁厚小于0.1μm。通过恒电流放电/充电测量对锂存储容量进行了定量,显示出第一个放电/充电循环中的比容量为1425 mAh / g,库仑效率为81%。放电/充电容量随着充电速率的增加而降低,并且在高充电速率下容量衰减不那么明显。形态分析表明,锂化/脱锂循环后表面粗糙度增加,孔隙率降低。

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