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Formation and some properties of Fe core-shell powders with experimental parameters of the chemical vapor condensation process

机译:铁核-壳粉的形成及其一些性质的化学气相凝结实验参数

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Core-shell powders, recently, have aroused interest because of their potential applications in various areas such as electronics, optics, catalysis, ferrofluids, and magnetic data storage. Their unique properties and superior performances are determined by their powder size, shell thickness and surface structure, phase and powder interaction. In this study, carbon-coated Fe core-shell powders were prepared by chemical vapor condensation (CVC) process using Fe metal-organic (Fe(CO)_5) precursor and carbon containing carrier gases such as carbon monoxide and methane. Effects of experimental parameters on the properties of the as-produced core-shell powders were studied by X-ray diffractometer, Brunauer-Emitter-Teller analyzer, high resolution transmission electron microscope and X-ray photoelectron spectrometer. The microstructures and phases of the synthesized core-shell powders varied with the decomposition temperature of the precursors and the flow rate of the carrier gases. CVC Fe powders showed intricate long stand-like structure because of intrinsic magnetic properties of Fe.
机译:近年来,核壳粉末引起了人们的兴趣,因为它们在电子,光学,催化,铁磁流体和磁数据存储等各个领域的潜在应用。它们的独特性能和优异的性能取决于它们的粉末尺寸,外壳厚度和表面结构,相与粉末的相互作用。在这项研究中,碳包覆的铁核-壳粉是通过化学气相冷凝(CVC)工艺使用铁金属有机(Fe(CO)_5)前驱体和含碳载气(例如一氧化碳和甲烷)制备的。用X射线衍射仪,Brunauer-Emitter-Teller分析仪,高分辨率透射电子显微镜和X射线光电子能谱仪研究了实验参数对所制核壳粉末性能的影响。合成的核-壳粉末的微观结构和相随前体的分解温度和载气的流速而变化。 CVC铁粉由于铁的固有磁性而显示出复杂的长立架状结构。

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