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Bulk synthesis of crystalline and crystalline core/amorphous shell silicon nanowires and their application for energy storage

机译:晶体和晶体核/非晶壳硅纳米线的本体合成及其在储能中的应用

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Silicon nanowires (NWs) have stimulated significant interest and found numerous applications; however, many applications will require a bulk quantity of nanowires to be synthesized in a reliable way. In this paper, we report the bulk synthesis of silicon nanowires on millimeter scale Al_2O _3 spheres with a thermal chemical vapor deposition system (CVD) via the vapor-liquid-solid (VLS) growth mechanism. The spherical substrates enable the realization of Si nanowire synthesis on three-dimensional surfaces in comparison with the synthesis on a planar, two-dimensional wafer substrate. By modifying temperature in the recipe of synthesis, both single-crystalline and crystalline core/amorphous shell Si nanowires were obtained with this nanowire-on-spherical-support method. Conspicuous distinction in crystallinity of the nanowires was revealed by transmission electron microscopy characterization. The crystalline core/amorphous shell Si nanowires were utilized to form the anode of Li-ion battery half-cells with the traditional slurry method. Galvanostatic measurement demonstrated that the maximum power capacity achievable by the electrodes was 3500 mAh/g and capacity sustained at 1100 mAh/g after 60 cycles of charging and discharging.
机译:硅纳米线(NW)引起了人们的极大兴趣,并发现了许多应用。然而,许多应用将需要以可靠的方式合成大量的纳米线。在本文中,我们报告了通过热化学气相沉积系统(CVD)通过汽-液-固(VLS)生长机理在毫米级Al_2O _3球上进行硅纳米线的本体合成。与在平面二维晶片衬底上的合成相比,球形衬底使得能够在三维表面上实现Si纳米线合成。通过在合成方法中改变温度,用这种球形支撑纳米线方法可以得到单晶和晶核/非晶壳Si纳米线。通过透射电子显微镜表征揭示了纳米线结晶度的明显区别。采用传统的浆料法,利用晶核/非晶壳硅纳米线形成锂离子电池半电池的阳极。恒电流测量表明,在60个充放电循环后,电极可达到的最大功率容量为3500 mAh / g,容量保持在1100 mAh / g。

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