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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Silicon nanowires and silica nanoitubes seeded by copper nanoparticles in an organic solvent
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Silicon nanowires and silica nanoitubes seeded by copper nanoparticles in an organic solvent

机译:铜纳米粒子在有机溶剂中播种的硅纳米线和硅纳米管

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Crystalline silicon (Si) nanowires were synthesized by adding copper sulfide (CuS) nanocrystals and monophenylsilane (MPS) to supercritical toluene at 500 degrees C at 10.3 MPa. When a small amount of water and oxygen is added to the reaction, amorphous SiO2 nanotubes form. In both the nanotube and nanowire reactions, the CuS nanocrystals converted to Cu metal. Because the growth temperature is several hundred degrees below the Cu:Si eutectic temperature at 800 degrees C, the nanowires and nanotubes both appear to grow by a solid-phase seeding process. Furthermore, a portion of the SiO2 nanotubes (similar to 5%) were found to be helically coiled. When gold (Au) nanocrystals were added instead of CuS, only SiO2 nanofibers with solid cores formed and there were no coiled structures. The silica/metal interface morphology was examined for both Cu and Au and found to differ significantly for each metal, which perhaps explains the difference in silica morphology produced by these two metals.
机译:通过在500摄氏度,10.3 MPa下向超临界甲苯中添加硫化铜(CuS)纳米晶体和单苯基硅烷(MPS)来合成晶体硅(Si)纳米线。当向反应中添加少量的水和氧气时,会形成无定形的SiO2纳米管。在纳米管和纳米线反应中,CuS纳米晶体都转化为金属铜。因为生长温度比800℃时的Cu:Si共晶温度低数百度,所以纳米线和纳米管似乎都通过固相播种工艺生长。此外,发现一部分SiO 2纳米管(约5%)是螺旋形盘绕的。当添加金(Au)纳米晶体代替CuS时,仅形成具有实心核的SiO2纳米纤维,而没有卷曲结构。同时检查了铜和金的二氧化硅/金属界面形态,发现每种金属的显着差异,这也许可以解释这两种金属产生的二氧化硅形态的差异。

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