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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Uninterrupted galvanic reaction for scalable and rapid synthesis of metallic and bimetallic sponges/dendrites as efficient catalysts for 4-nitrophenol reduction
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Uninterrupted galvanic reaction for scalable and rapid synthesis of metallic and bimetallic sponges/dendrites as efficient catalysts for 4-nitrophenol reduction

机译:不间断的电化学反应,可扩展且快速地合成金属和双金属海绵/枝晶,作为4-硝基苯酚还原的有效催化剂

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摘要

Here, we demonstrate an uninterrupted galvanic replacement reaction (GRR) for the synthesis of metallic (Ag, Cu and Sn) and bimetallic (Cu M, M=Ag, Au, Pt and Pd) sponges/dendrites by sacrificing the low reduction potential metals (Mg in our case) in acidic medium. The acidic medium prevents the oxide formation on Mg surface and facilitates the uninterrupted reaction. The morphology of dendritic/spongy structures is controlled by the volume of acid used for this reaction. The growth mechanism of the spongy/dendritic microstructures is explained by diffusion-limited aggregate model (DLA), which is also largely affected by the volume of acid. The significance of this method is that the yield can be easily predicted, which is a major challenge for the commercialization of the products. Furthermore, the synthesis is complete in 1-2 minutes at room temperature. We show that the sponges/dendrites efficiently act as catalysts to reduce 4-nitrophenol (4-NP) to 4-aminophenol (4-AP) using NaBH4-a widely studied conversion process.
机译:在这里,我们展示了通过牺牲低还原电位的金属来合成金属(Ag,Cu和Sn)和双金属(Cu M,M = Ag,Au,Pt和Pd)海绵/树突的不间断的电置换反应(GRR) (在我们的情况下为Mg)在酸性介质中。酸性介质防止在Mg表面形成氧化物并促进不间断的反应。树突/海绵状结构的形态由用于该反应的酸的体积控制。海绵/树突状微结构的生长机理由扩散受限的聚集体模型(DLA)解释,该模型也受酸量的很大影响。该方法的重要性在于可以轻松预测产量,这是产品商业化的主要挑战。此外,在室温下1-2分钟内完成合成。我们表明,使用NaBH4-a广泛研究的转化过程,海绵/树突有效地充当了将4-硝基苯酚(4-NP)还原为4-氨基苯酚(4-AP)的催化剂。

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