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Synthesis of stable ligand-free gold-palladium nanoparticles using a simple excess anion method

机译:简单的过量阴离子法合成稳定的无配体的金钯纳米粒子

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We report a convenient excess anion modification and post-reduction step to the impregnation method which permits the reproducible preparation of supported bimetallic AuPd nanoparticles having a tight particle size distribution comparable to that found for sol-immobilization materials but without the complication of ligands adsorbed on the particle surface. The advantageous features of the modified impregnation materials compared to those made by conventional impregnation include a smaller average particle size, an optimized random alloy composition, and improved compositional uniformity from particle-to-particle resulting in higher activity and stability compared to the catalysts prepared using both conventional impregnation and sol immobilization methods. Detailed STEM combined with EDX analyses of individual particles have revealed that an increase in anion concentration increases the gold content of individual particles in the resultant catalyst, thus providing a method to control/tune the composition of the nanoalloy particles. The improved activity and stability characteristics of these new catalysts are demonstrated using (i) the direct synthesis of hydrogen peroxide and (ii) the solvent-free aerobic oxidation of benzyl alcohol as case studies.
机译:我们报告了一种方便的过量阴离子改性和后还原步骤的浸渍方法,该方法可重现制备负载型双金属AuPd纳米粒子,该纳米粒子具有与溶胶固定材料相当的紧密粒度分布,但没有吸附在金属上的配体复杂粒子表面。与使用常规浸渍方法制备的材料相比,改性浸渍材料的优点包括:较小的平均粒径,优化的无规合金组成以及改进的颗粒间组成均匀性,与使用该方法制备的催化剂相比,具有更高的活性和稳定性。常规浸渍和溶胶固定方法都可以。详细的STEM与单个颗粒的EDX分析相结合发现,阴离子浓度的增加会增加所得催化剂中单个颗粒的金含量,从而提供了一种控制/调整纳米合金颗粒组成的方法。使用案例(i)直接合成过氧化氢和(ii)苄醇的无溶剂需氧氧化证明了这些新型催化剂的活性和稳定性得到了改善。

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