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Direct growth of oriented nanocrystals of gamma-iron on graphene oxide substrates. Detailed analysis of the factors affecting unexpected formation of the gamma-iron phase

机译:在石墨烯氧化物基材上直接生长γ-铁的纳米晶体。 影响伽马铁阶段意外形成的因素的详细分析

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摘要

In bulk, face-centered gamma-iron exists only at temperatures above 917 degrees C, returning back to body-centered alpha-iron upon cooling below this temperature. In this work, we report formation of the gamma-iron phase at temperatures significantly lower than the 917 degrees C threshold in the form of nanoparticles. Moreover, the as-grown nanoparticles have specific orientation along the (002) plane as the result of the templating effect of the graphene oxide substrate. Also, we provide a complete account of the factors responsible for the formation of the gamma-phase. Namely, we demonstrate the role of the type of carbon substrate, and the effect of the temperature and time of annealing and the graphene oxide/iron ion ratio. We demonstrate that the gamma-phase is not formed when using three-dimensional forms of carbon, elucidating the "magic" role of graphene oxide in this process.
机译:在体积块中,仅在917摄氏度高于917℃的温度下,以较高的伽马 - 铁存在,在冷却以下温度时返回到身体中心的α-铁。 在这项工作中,我们在温度下报告形成γ-铁阶段,明显低于纳米颗粒形式的917摄氏度阈值。 此外,由于石墨烯氧化物基板的模板效果,生长的纳米颗粒具有沿(002)平面的比取向。 此外,我们提供了负责形成伽马阶段的因素的完整帐户。 即,我们证明了碳基材的类型的作用,以及退火的温度和时间和石墨烯氧化物/铁离子比的作用。 我们证明在使用三维形式的碳时未形成γ相,阐明石墨烯氧化物在该过程中的“魔法”作用。

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