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Au-Pd supported nanocrystals prepared by a sol immobilisation technique as catalysts for selective chemical synthesis

机译:通过溶胶固定技术制备的Au-Pd负载纳米晶体,作为选择性化学合成的催化剂

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Catalysis by gold and gold-palladium nanoparticles has attracted significant research attention in recent years. These nanocrystalline materials have been found to be highly effective for selective and total oxidation, but in most cases the catalysts are prepared using precipitation or impregnation. We report the preparation of Au-Pd nanocrystalline catalysts supported on carbon prepared via a sol-immobilisation technique and these have been compared with Au-Pd catalysts prepared via impregnation. The catalysts have been evaluated for two selective chemical syntheses, namely, oxidation of benzyl alcohol and the direct synthesis of hydrogen peroxide. The catalysts have been structurally characterised using a combination of scanning transmission electron microscopy and X-ray photoelectron spectroscopy. The catalysts prepared using the sol immobilisation technique show higher activity when compared with catalysts prepared by impregnation as they are more active for both hydrogen peroxide synthesis and hydrogenation, and also for benzyl alcohol oxidation. The method facilitates the use of much lower metal concentrations which is a key feature in catalyst design, particularly for the synthesis of hydrogen peroxide.
机译:近年来,金和金钯纳米颗粒的催化作用引起了广泛的研究关注。已经发现这些纳米晶体材料对于选择性和完全氧化是高度有效的,但是在大多数情况下,催化剂是使用沉淀或浸渍来制备的。我们报告了通过溶胶固定化技术制备的载于碳上的Au-Pd纳米晶催化剂的制备,并将其与通过浸渍制备的Au-Pd催化剂进行了比较。已经评估了催化剂的两种选择性化学合成,即苯甲醇的氧化和过氧化氢的直接合成。使用扫描透射电子显微镜和X射线光电子能谱的组合对催化剂进行了结构表征。与通过浸渍制备的催化剂相比,使用溶胶固定技术制备的催化剂显示出更高的活性,因为它们对于过氧化氢合成和氢化以及对苯甲醇的氧化都更具活性。该方法有助于使用低得多的金属浓度,这是催化剂设计中的关键特征,特别是对于过氧化氢的合成。

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