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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Laser synthesis of magnetic iron-carbon nanocomposites with size dependent properties
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Laser synthesis of magnetic iron-carbon nanocomposites with size dependent properties

机译:具有尺寸依赖性的磁性铁碳纳米复合材料的激光合成

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摘要

Iron-carbon nanocomposites have gained interest due to their new engineering and biomedical applications. Carbon coated iron nanoparticles (Fe@C) were obtained continuously and in a single step using the laser pyrolysis method. The continuous wave CO2 laser beam was used to continuously heat a sensitized (with ethylene) precursor gas mixture, in which iron pentacarbonyl (vapor) and acetylene were the iron and carbon donors, respectively. The effect of varying the residence time in the reaction zone through the variation of the internal nozzle diameter was explored in order to improve the particle size and the phase distributions. At increased nozzle diameter, (i) the particle mean diameter increases (from about 3.5 to 10,5 nm), (ii) higher ordering of the crystallographic network seems to occur, (iii) the dominance of the α-Fe and iron carbide phases is revealed. Onion-like graphenic layers often cover the buried iron cores. Magnetic measurements and temperature dependent Mossbauer spectroscopy were used in order to find correlations concerning the magnetic behavior and the Fe phase composition of samples. Preliminary experiments for obtaining stable water-based magnetic nanofluids are discussed.
机译:铁碳纳米复合材料由于其新的工程和生物医学应用而引起了人们的兴趣。使用激光热解法连续一步地获得碳包覆的铁纳米颗粒(Fe @ C)。连续波CO2激光束用于连续加热敏化(含乙烯)的前体气体混合物,其中五羰基铁(蒸气)和乙炔分别是铁和碳供体。探索了通过改变内部喷嘴直径来改变在反应区中的停留时间的效果,以改善粒径和相分布。在喷嘴直径增加时,(i)颗粒平均直径增加(从约3.5到10.5 nm),(ii)似乎出现了更高的晶体网络序,(iii)α-Fe和碳化铁的优势阶段被揭示。洋葱状的石墨层通常覆盖着埋在地下的铁芯。为了找到有关样品的磁性和铁相组成的相关性,使用了磁测量和温度依赖性莫斯鲍尔光谱。讨论了获得稳定的水基磁性纳米流体的初步实验。

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