Feng Lili, Wu Xiaochun, Ren Lirong, Xiang Yanjuan, He Weiwei, Zhang Ke, Zhou Weiya, Xie Sishen
National Center for Nanoscience and Technology, Zhongguancun, Beiyitiao No. 11, Beijing, 100190 (PR China).
Chemistry. 2008;14(31):9764-71. doi: 10.1002/chem.200800544.
Pt nanodots were formed on Au nanorods (NRs) by using a simple seed-mediated growth. Their density and distribution on the Au NR can be finely tuned by varying the reaction parameters. At lower Pt/Au ratios, the Pt nanodots mainly appear at endcaps and side edges of the Au rod. At higher Pt/Au ratios, they distribute homogeneously over the whole Au rod. The obtained Pt nanostructure is a single crystal owing to the epitaxial growth of Pt on the Au rod. Due to the unique surface plasmon resonance (SPR) features of the Au NRs, the Au core/Pt shell (Au@Pt) nanostructures also exhibit well-defined and red-shifted longitudinal SPR bands in the visible and near-infrared region. The position and intensity can be regulated by the thickness and amount of the Pt shell. At a thinner Pt thickness, the Au@Pt NRs show higher dielectric sensitivity than the corresponding Au NRs. It thus opens up the potential of Pt nanostructures for SPR-based sensing.
通过简单的种子介导生长法在金纳米棒(NRs)上形成了铂纳米点。通过改变反应参数,可以精细调节它们在金纳米棒上的密度和分布。在较低的铂/金比例下,铂纳米点主要出现在金棒的端部和侧边。在较高的铂/金比例下,它们均匀地分布在整个金棒上。由于铂在金棒上的外延生长,所获得的铂纳米结构是单晶。由于金纳米棒具有独特的表面等离子体共振(SPR)特性,金核/铂壳(Au@Pt)纳米结构在可见光和近红外区域也表现出明确的红移纵向SPR带。其位置和强度可以通过铂壳的厚度和数量来调节。在铂厚度较薄时,Au@Pt纳米棒比相应的金纳米棒表现出更高的介电敏感性。因此,这为基于SPR的传感开辟了铂纳米结构的潜力。