材料科学
纳米线
阳极
硅
成核
纳米技术
锡
锂(药物)
铜
硅化物
锂离子电池
光电子学
电池(电)
冶金
电极
化学
功率(物理)
物理化学
有机化学
内分泌学
物理
医学
量子力学
作者
Gearoid Anthony Collins,Seamus Kilian,Hugh Geaney,Kevin M. Ryan
出处
期刊:Small
[Wiley]
日期:2021-07-15
卷期号:17 (34)
被引量:33
标识
DOI:10.1002/smll.202102333
摘要
Abstract High loading (>1.6 mg cm −2 ) of Si nanowires (NWs) is achieved by seeding the growth from a dense array of Cu 15 Si 4 NWs using tin seeds. A one‐pot synthetic approach involves the direct growth of CuSi NWs on Cu foil that acts as a textured surface for Sn adhesion and Si NW nucleation. The high achievable Si NW loading is enabled by the high surface area of CuSi NWs and bolstered by secondary growth of Si NWs as branches from both Si and CuSi NW stems, forming a dense Si active layer, interconnected with an electrically conducting CuSi array (denoted Si/CuSi). When employed as Li‐ion battery anodes, the Si/CuSi nest structure demonstrates impressive rate performance, reaching 4.1 mAh cm −2 at C/20, 3.1 mAh cm −2 at C/5, and 0.8 mAh cm −2 at 6C. Also, Si/CuSi shows remarkable long‐term stability, delivering a stable areal capacity of 2.2 mAh cm −2 after 300 cycles. Overall, complete anode fabrication is achieved within a single reaction by employing an inexpensive Sn powder approach.
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