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首页> 外文期刊>Nano letters >Rapid Catalyst-Free Flame Synthesis of Dense, Aligned alpha-Fe2O3 Nanoflake and CuO Nanoneedle Arrays
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Rapid Catalyst-Free Flame Synthesis of Dense, Aligned alpha-Fe2O3 Nanoflake and CuO Nanoneedle Arrays

机译:快速,无催化剂的密集致密排列的α-Fe2O3纳米片和CuO纳米针阵列的火焰合成。

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摘要

This paper describes a simple and yet rapid flame synthesis method to produce one-dimensional metal oxide nanostructures by directly oxidizing metals in the postflame region of a flat flame. Single and bicrystal alpha-Fe2O3 nanoflakes and CuO nanoneedles were grown in the postflame region by a solid diffusion mechanism and were aligned perpendicularly to the substrate with a surface coverage density of 10 nanostructures per square micrometer. The alpha-Fe2O3 nanoflakes reached lengths exceeding 20 mu m after only 20 min of growth, This rapid growth rate is attributed to a large initial heating rate of the metal substrate in the flame and to the presence of water vapor and carbon dioxide In the gas phase that together generate thin and porous oxide layers that greatly enhance the diffusion of the deficient metal to the nanostructure growth site and enable growth at higher temperatures than previously demonstrated.
机译:本文介绍了一种简单而又快速的火焰合成方法,该方法通过直接氧化平焰后火焰区域中的金属来生产一维金属氧化物纳米结构。单晶和双晶α-Fe2O3纳米薄片和CuO纳米针通过固态扩散机制在火焰后区域中生长,并垂直于基材排列,表面覆盖密度为每平方微米10个纳米结构。仅生长20分钟后,α-Fe2O3纳米薄片的长度就超过了20微米。这种快速的增长速度归因于火焰中金属基材的较大初始加热速度以及气体中存在水蒸气和二氧化碳相共同产生薄的和多孔的氧化物层,这大大增强了缺陷金属向纳米结构生长位点的扩散,并使之能够在比先前证明的更高的温度下生长。

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