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首页> 外文期刊>Journal of Nanoparticle Research >Vapor-phase chemical synthesis of magnesium oxide nanowires by DC arc discharge
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Vapor-phase chemical synthesis of magnesium oxide nanowires by DC arc discharge

机译:直流电弧放电气相化学合成氧化镁纳米线

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Magnesium oxide (MgO) nanowires have been synthesized by DC arc discharge without using metal catalysts. These MgO nanowires are single-crystalline, with an axes along the [100] direction. The cross sectional diameter of the nanowires spans the range of 5–150 nm, with the length up to hundreds of micrometers. The growth of MgO nanowires can be considered as a vapor-phase chemical reaction process, in which both defects and oxygen partial pressure play important roles. The photoluminescence (PL) measurement reveals two emission bands centered at 437 and 496 nm, which can be ascribed to various structural defects and nanosize effect of MgO nanowires. This efficient synthesis method has the potential for large-scale preparation of metal oxide nanostructures, using metals with low melting-points as the raw materials.
机译:已经通过不使用金属催化剂的DC电弧放电合成了氧化镁(MgO)纳米线。这些MgO纳米线是单晶的,其轴沿[100]方向。纳米线的横截面直径跨度在5–150 nm之间,长度可达数百微米。 MgO纳米线的生长可以看作是一种气相化学反应过程,其中缺陷和氧分压都起着重要的作用。光致发光(PL)测量揭示了两个中心在437和496 nm处的发射带,这可以归因于MgO纳米线的各种结构缺陷和纳米尺寸效应。这种有效的合成方法具有使用低熔点金属作为原料大规模制备金属氧化物纳米结构的潜力。

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