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首页> 外文期刊>International Journal of Self-Propagating High-Temperature Synthesis >One-Step Combustion Synthesis of Novel Nanocarbons via Magnesiothermic Reduction of Carbon-Containing Oxidants
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One-Step Combustion Synthesis of Novel Nanocarbons via Magnesiothermic Reduction of Carbon-Containing Oxidants

机译:通过镁氧化剂氧化碳氧化剂的新型纳米碳的一步燃烧合成

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摘要

The aim of this work was to transform carbon-containing ammonium oxalate, (NH~(4))~(2)C~(2)O~(4), and ammonium acetate, NH~(4)CH~(3)CO~(2), into 3D graphene-like carbon nanomaterials via magnesiothermic reduction. Both raw and purified products were characterized by XRD, SEM, TGA, and Raman spectra. The conversion of the initial amount of carbon (in salts) into solid carbon (in purified product) varied between 8.5% (for oxalate) and 90.0% (for acetate). The XRD results confirmed the absence of starting salts in the raw products (MgO and C). The purified product was found to contain largely the turbostratic carbon forming a petal-like 3D graphene material. The application potential of synthesized materials was demonstrated on the example of the removal of 4-chlorophenol from its aqueous solution.
机译:这项工作的目的是转化含碳的草酸铵,(NH〜(4))〜(2)C〜(2)O〜(4)和乙酸铵,NH〜(4)CH〜(3) CO〜(2),通过镁还原到3D石墨烯碳纳米材料中。 原料和纯化的产品的特征在于XRD,SEM,TGA和拉曼光谱。 将碳(盐)初始量的碳(盐)转化为固体碳(在纯化的产物中)的转化为8.5%(用于草酸盐)和90.0%(乙酸盐)。 XRD结果证实了原料产品(MgO和C)中没有起始盐。 发现纯化产物大致含有形成花瓣状3D石墨烯材料的涡轮氧化碳。 合成材料的应用潜力在从其水溶液中除去4-氯苯酚的实施例中。

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