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Synthesis of nanocrystals by discharges in liquid nitrogen from Si–Sn sintered electrode

机译:Si-Sn烧结电极中液态氮放电合成纳米晶体

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摘要

The synthesis feasibility of silicon–tin nanocrystals by discharges in liquid nitrogen is studied using a Si–10 at % Sn sintered electrode. Time-resolved optical emission spectroscopy shows that silicon and tin melt almost simultaneously. The presence of both vapours does not lead to the synthesis of alloyed nanocrystals but to the synthesis of separate nanocrystals of silicon and tin with average sizes of 10 nm. These nanocrystals are transformed into amorphous silicon oxide (am–SiO2) and β–SnO2 by air oxidation, after evaporation of the liquid nitrogen. The synthesis of an am-Si0.95Sn0.05 phase around large silicon crystals (~500 nm) decorated by β–Sn spheroids is achieved if the current flowing through electrodes is high enough. When the sintered electrode is hit by powerful discharges, some grains are heated and tin diffuses in the large silicon crystals. Next, these grains are shelled and fall into the dielectric liquid.
机译:利用Si-10 at%Sn烧结电极研究了通过液氮放电合成硅锡纳米晶体的可行性。时间分辨光发射光谱表明,硅和锡几乎同时熔化。两种蒸汽的存在并不会导致合金化纳米晶体的合成,而会导致硅和锡的平均尺寸为10纳米的分离的纳米晶体的合成。液态氮蒸发后,这些纳米晶体通过空气氧化转化为非晶态氧化硅(am–SiO2)和β–SnO2。如果流过电极的电流足够高,则可以在由β-Sn球体装饰的大硅晶体(〜500 nm)周围合成am-Si0.95Sn0.05相。当烧结的电极受到强大的放电冲击时,一些晶粒被加热,锡扩散到大的硅晶体中。接下来,将这些颗粒去壳并掉入电介质液体中。

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