State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, Jilin, China.
Nanoscale. 2013 Dec 21;5(24):12558-64. doi: 10.1039/c3nr04054b.
Metal nanoclusters exhibit unusual optical and catalytic properties due to their unique electronic structures. Here, surfactant-free silver nanoclusters supported on carbon nanodots were synthesized through a facile and green approach with only glucose and AgNO3 as precursors and without any other protecting ligands and reducing agents. The hybrid nanoclusters exhibited enhanced blue fluorescence compared to the carbon nanodots. More importantly, the "surface-clean" silver nanoclusters have remarkable electrocatalytic performance towards oxygen reduction reaction (ORR) with the most efficient four-electron transfer process. Moreover, compared with commercial Pt/C catalyst, the Pt-free hybrid clusters showed comparable catalytic performance for ORR but much higher tolerance to methanol crossover. Such silver nanoclusters will provide broad applications in fluorescence-related areas and in fuel cells as an efficient Pt-free catalyst with low cost and high catalytic performance.
金属纳米团簇由于其独特的电子结构而表现出异常的光学和催化性质。在这里,通过一种简单而绿色的方法,仅使用葡萄糖和 AgNO3 作为前体,而无需任何其他保护配体和还原剂,在碳纳米点上合成了无表面活性剂的银纳米团簇。与碳纳米点相比,杂化纳米团簇表现出增强的蓝色荧光。更重要的是,“表面清洁”的银纳米团簇对氧还原反应(ORR)具有显著的电催化性能,具有最有效的四电子转移过程。此外,与商业 Pt/C 催化剂相比,无 Pt 混合团簇在 ORR 中表现出相当的催化性能,但对甲醇交叉具有更高的耐受性。这种银纳米团簇将在荧光相关领域以及燃料电池中作为一种高效、无 Pt、低成本和高催化性能的催化剂得到广泛应用。