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A versatile wet-chemical method for synthesis of one-dimensional ferric and other transition metal oxides

机译:一种用于合成一维三价铁和其他过渡金属氧化物的多功能湿化学方法

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摘要

We developed a versatile method using alkylamines (octylamine and isobutylamine) as structure-directing agents for synthesis of various 1D transition metal oxides in aqueous solution. In this report, 1D iron and copper oxide precursors (for simplicity, we have denoted them as pre-Fe2O3 and pre-CuO) and ZnO were prepared. After calcination and reduction, the 1D nanostructure of pre-Fe2O3 can be easily converted to 1D alpha-Fe2O3 and 1D Fe3O4, successively. The aspect ratio of the 1D nanostructures increases with the reaction time. XRD, TEM, in situ TEM, and TGA were used to characterize the samples. Results showed that after calcination at temperatures higher than 300 degrees C, the as-prepared 1D pre-Fe2O3, which was polycrystalline, transformed into 1D single-crystalline alpha-Fe2O3. A mechanism of assembling and "packing" along a certain direction for the growth of the 1D nanostructure was confirmed.
机译:我们开发了一种使用烷基胺(辛胺和异丁胺)作为结构导向剂的通用方法,用于在水溶液中合成各种一维过渡金属氧化物。在本报告中,制备了一维铁和氧化铜前驱体(为简单起见,我们将其表示为pre-Fe2O3和pre-CuO)和ZnO。经过煅烧和还原后,pre-Fe2O3的1D纳米结构可以很容易地依次转化为1D alpha-Fe2O3和1D Fe3O4。一维纳米结构的纵横比随着反应时间的增加而增加。采用XRD、透射电镜、原位透射电镜和TGA对样品进行表征。结果表明,在高于300 °C的温度下煅烧后,制备的多晶一维预Fe2O3转化为一维单晶α-Fe2O3。证实了沿特定方向组装和“堆积”以生长一维纳米结构的机制。

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