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4-Nitrophenol reduction catalysed by Au-Ag bimetallic nanoparticles supported on LDH: Homogeneous vs. heterogeneous catalysis

机译:LDH上负载的Au-Ag双金属纳米粒子催化的4-硝基苯酚还原:均相催化与异相催化

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Bimetallic nanoparticles, which are composed of two metal elements in a particle, exhibit much higher catalytic activity than respective monometallic ones due to new bi-functional or synergistic effects, so-called a ligand and/or an ensemble effect. In this work, a novel homogeneous as well as heterogeneous Au-Ag bimetallic nano catalyst have been synthesized and supported on layer double hydroxide (LDH) by a simple wet chemical process. The support of LDH has reduced the size as well as capped the bimetallic nanoparticles and hence prevents the agglomeration. The surface morphology and chemical composition of these bimetallic nanoparticles were examined by scanning electron microscopy, transmission electron microscopy, X-ray diffraction, and X-ray photoelectron spectroscopy. It was found that alloy (40-60 nm) and core-shell (15-30 nm) Au-Ag bimetallic nanoparticles were formed for heterogeneous and homogeneous composites, respectively. Moreover, the different compositions of as-synthesized Au-Ag bimetallic nanoparticles were utilized for the catalytic reduction of 4-nitrophenol. The highest activity was observed for the Au-Ag nanoparticles prepared with Au-Ag ratio at 1:3 and the activity became 10 to 45 times higher than that of original monometallic Au or Ag nanoparticles. The rate kinetics was studied for both homogeneous and heterogeneous system on the reduction of 4-nitrophenol and observed that the rate of reduction was greater in case of homogeneous catalysts as compared to heterogeneous catalysts. Also, the heterogeneous catalysts were effortlessly recovered and reused (up to 5 cycles) after completion of the reduction reaction.
机译:在颗粒中由两种金属元素组成的双金属纳米颗粒由于新的双功能或协同效应(所谓的配体和/或整体效应)而比相应的单金属纳米颗粒具有更高的催化活性。在这项工作中,已经合成了一种新颖的均相和非均相的Au-Ag双金属纳米催化剂,并通过简单的湿化学工艺将其负载在双层氢氧化物(LDH)上。 LDH的载体减小了尺寸,并封盖了双金属纳米颗粒,因此防止了团聚。通过扫描电子显微镜,透射电子显微镜,X射线衍射和X射线光电子能谱检查这些双金属纳米颗粒的表面形态和化学组成。发现分别形成了异质和均质复合材料的合金(40-60 nm)和核-壳(15-30 nm)Au-Ag双金属纳米粒子。而且,将合成的Au-Ag双金属纳米颗粒的不同组成用于催化还原4-硝基苯酚。对于以1∶3的Au-Ag比率制备的Au-Ag纳米颗粒,观察到最高活性,并且该活性变得比原始的单金属Au或Ag纳米颗粒高10至45倍。对4-硝基苯酚还原反应的均相和非均相体系的速率动力学进行了研究,发现均相催化剂的还原速率比非均相催化剂的还原速率大。同样,还原反应完成后,不费吹灰之力就可以回收并重复使用多相催化剂(最多5个循环)。

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