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Tunable Core-Shell Nanowire Active Material for High Capacity Li-Ion Battery Anodes Comprised of PECVD Deposited aSi on Directly Grown Ge Nanowires

机译:可调谐芯 - 壳纳米线活性材料,用于高容量的高容量锂离子电池阳极,其包括直接生长的GE纳米线上的PECVD沉积ASI

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Herein, we report the formation of core@shell nanowires (NWs) comprised of crystalline germanium NW cores with amorphous silicon shells (Ge@aSi) and their performance as a high capacity Li-ion battery anode material. The Ge NWs were synthesized directly from the current collector in a solvent vapor growth (SVG) system and used as hosts for the deposition of the Si shells via a plasma-enhanced chemical vapor deposition (PECVD) process utilizing an expanding thermal plasma (ETP) source. The secondary deposition allows for the preparation of Ge@aSi core@shell structures with tunable Ge/Si ratios (2:1 and 1:1) and superior gravimetric and areal capacities, relative to pure Ge. The binder-free anodes exhibited discharge capacities of up to 2066 mAh/g and retained capacities of 1455 mAh/g after 150 cycles (for the 1:1 ratio). The 2:1 ratio showed a minimal similar to 5% fade in capacity between the 20th and 150th cycles. Ex situ microscopy revealed a complete restructuring of the active material to an interconnected Si1-xGex morphology due to repeated lithiation and delithiation. In full-cell testing, a prelithiation step counteracted first cycle Li consumption and resulted in a 2-fold improvement to the capacity of the prelithiated cell versus the unconditioned full-cells. Remarkable rate capability was also delivered where capacities of 750 mAh/g were observed at a rate of 10 C.
机译:在此,我们报告了由具有非晶硅壳(GE @ ASI)的结晶锗NW芯构成的核心@壳纳米线(NWS)的形成及其作为高容量锂离子电池阳极材料的性能。直接从溶剂蒸汽生长(SVG)系统中的集电器中合成GE NW,并用作利用膨胀热等离子体(ETP)的等离子体增强的化学气相沉积(PECVD)工艺来沉积Si壳的宿主来源。二次沉积允许使用可调谐GE / Si比(2:1和1:1)和高级重量和面积容量的GE @ ASI核心@ Shell结构的制备。无粘合剂阳极表现出高达2066mAh / g的放电容量,并在150次循环后(1:1的比例)在1555mAh / g的保留容量。 2:1的比率显示出20th和第150次循环之间的容量的最小相似。 Ex原位显微镜显示由于重复的锂化和脱锂而导致的活性物质与相互连接的Si1-XGEx形态完全重组。在全细胞测试中,预循环步骤抵消了第一循环锂消耗,并导致预析细胞与无条件的全细胞的容量提高了2倍。还提供了显着的速率能力,其中以10℃的速率观察到750mAh / g的容量。

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