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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >A Strategy for the Formation of Gold-Palladium Supra-Nanoparticles from Gold Nanoparticles of Various Shapes and Their Application to High-Performance H2O2 Sensing
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A Strategy for the Formation of Gold-Palladium Supra-Nanoparticles from Gold Nanoparticles of Various Shapes and Their Application to High-Performance H2O2 Sensing

机译:由各种形状的金纳米粒子形成金钯超纳米粒子的策略及其在高性能H2O2传感中的应用

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摘要

We present a new approach for the synthesis of gold (Au)-palladium (Pd) bimetallic supra-nanoparticles in which densely packed anisotropic Pd nanostructures surround a central Au nanoparticle (rod, sphere, cubic shape). They were obtained by means of Pd crystal growth on Au nanoparticle surfaces which are modified with a mixture of cetyltrimethylammonium bromide (CTAB) and 5-bromosalicylic acid (5-BrSA). From a comparative study with a Au nanorod (NR) as a seed, the use of the CTAB/5-BrSA mixture plays a pivotal role in obtaining such unique supra-structures; the Au NR capped with only CTAB resulted in Au corecontinuous Pd shell nanoparticles instead. The AuPd supra-nanoparticles provide active surface area for electrocatalytic activities higher than that of the Au@Pd continuous shell nanoparticles, displaying outstanding performance for mediator-free electrochemical detection of H2O2 .
机译:我们提出了一种新的合成金(Au)-钯(Pd)双金属超纳米粒子的新方法,其中密集堆积的各向异性Pd纳米结构围绕着中心Au纳米粒子(棒,球,立方)。它们是通过在Au纳米颗粒表面上进行Pd晶体生长而获得的,该表面被十六烷基三甲基溴化铵(CTAB)和5-溴水杨酸(5-BrSA)的混合物改性。根据以金纳米棒(NR)为种子的比较研究,CTAB / 5-BrSA混合物的使用在获得这种独特的超结构中起着关键作用。仅用CTAB封端的Au NR替代生成Au核连续的Pd壳纳米颗粒。 AuPd超纳米粒子提供的活性表面积比Au @ Pd连续壳纳米粒子的电催化活性更高,在无介体的H2O2电化学检测中显示出出色的性能。

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