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Facile synthesis of Ag-Au nano-alloys and their catalytic applications

机译:Ag-Au纳米合金的容易合成及其催化应用

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Prior reduction of Ag~+ to Ag° in the NVP dispersed in the solvent, dimethyl formamide (DMF) complex and the subsequent addition of HAuCl_4 to the mixture results in the galvanic replacement reaction, wherein the Ag nanoparticles acts as a template site for effective reduction of Au~(3+) to Au° augmented through NVP, thereby resulting in pure single phase Ag-Au alloy nanoparticles. Single sharp LSPR peaks for various fractional mole compositions of Ag and Au were observed between 435 to 515 nm, with the absorption peak blue shifting linearly with increase in the mole fraction of Au. The structural morphology of the alloy nanostructure was confirmed using TEM. The catalytic properties of the as-synthesized Ag-Au alloy nanoparticles were studied using the reduction process of 4-Nitro-Aniline (NA) to p-phenylenediamine (p-PDA) using NaBH_4. It was found that the reduction rate of 4-NitroAniline varies with the mole composition of Ag and Au in the alloy nanostructure.
机译:在分散在溶剂中的NVP中的Ag〜+至Ag°的预先降低,二甲基甲酰胺(DMF)复合物和随后加入Haucl_4至混合物导致电催化置换反应,其中Ag纳米粒子用作有效的模板部位通过NVP减少Au〜(3+)至Au°,从而导致纯单相Ag-Au合金纳米颗粒。在435至515nm之间观察到Ag和Au各种分数痣组合物的单个锐利LSPR峰,吸收峰蓝色随着Au的摩尔分数的增加而线性地移动。使用TEM确认合金纳米结构的结构形态。使用NabH_4使用NaBH_4使用4-硝基 - 苯胺(Na)至对苯二胺(P-PDA)的还原过程研究了AS合成的Ag-Au合金纳米颗粒的催化性能。发现4-硝基苯胺的还原率随合金纳米结构中的Ag和Au的摩尔组合物而变化。

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