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首页> 外文期刊>Scientific reports. >Electrochemical synthesis of AuPt nanoflowers in deep eutectic solvent at low temperature and their application in organic electro-oxidation
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Electrochemical synthesis of AuPt nanoflowers in deep eutectic solvent at low temperature and their application in organic electro-oxidation

机译:低温共熔溶剂中AuPt纳米花的低温电化学合成及其在有机电氧化中的应用

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Deep eutectic solvents (DESs), called a new generation of green solvents, have broad applied in synthesis of nanomaterials due to their remarkable physicochemical properties. In this work, we used a unique strategy (adding moderate water (10%) to DES) to effectively prepare nanomaterials. Flower-like AuPt alloy nanoparticles were successfully synthesized using one-step electrochemical reduction method at a low potential of ?0.30?V ( vs . Pt) and a low temperature of 30?°C. In this process, the DES acted as solvent and shape-directing agent. More importantly, we used the electrode modified with the as-prepared nanomaterials as the anode to the electrochemical oxidation synthesis. The glassy carbon electrode modified with the AuPt nanoflowers was directly employed to the electro-oxidation of xanthene (XT) to xanthone (XO) under a constant low potential of 0.80?V ( vs . Ag/AgCl) and room temperature, with a high yield of XO. Moreover, the synthesis process was milder and more environment-friendly than conventional organic syntheses. This new strategy would have a promising application in electroorganic synthesis fields.
机译:深共熔溶剂(DES),被称为新一代绿色溶剂,由于其卓越的理化特性而被广泛应用于纳米材料的合成中。在这项工作中,我们采用了独特的策略(向DES中添加适量的水(10%))有效地制备了纳米材料。花样AuPt合金纳米粒子采用一步电化学还原法成功地合成,其电势低至0.30V(相对于Pt),温度低至30℃。在此过程中,DES充当溶剂和形状导向剂。更重要的是,我们使用经制备的纳米材料改性的电极作为电化学氧化合成的阳极。用AuPt纳米花修饰的玻璃状碳电极直接在0.80?V(相对于Ag / AgCl)的恒定低电势和室温下,以高电位将x吨(XT)氧化为th吨(XO)。 XO的产率。而且,与常规有机合成相比,合成过程更温和,更环保。这种新策略将在有机合成领域中有希望的应用。

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