Jain Titoo, Westerlund Fredrik, Johnson Erik, Moth-Poulsen Kasper, Bjørnholm Thomas
Nano-Science Center and Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100, Copenhagen Ø, Denmark.
ACS Nano. 2009 Apr 28;3(4):828-34. doi: 10.1021/nn900066w.
Gold nanorods (AuNRs) are of interest for a wide range of applications, ranging from imaging to molecular electronics, and they have been studied extensively for the past decade. An important issue in AuNR applications is the ability to self-assemble the rods in predictable structures on the nanoscale. We here present a new way to end-to-end link AuNRs with a single or few linker molecules. Whereas methods reported in the literature so far rely on modification of the AuNRs after the synthesis, we here dimerize gold nanoparticle seeds with a water-soluble dithiol-functionalized polyethylene glycol linker and expose the linked seeds to growth conditions identical to the synthesis of unlinked AuNRs. Doing so, we obtain a large fraction of end-to-end linked rods, and transmission electron microscopy provides evidence of a 1-2 nm wide gap between the AuNRs. Flow linear dichroism demonstrates that a large fraction of the rods are flexible around the hinging molecule in solution, as expected for a molecularly linked nanogap. By using excess of gold nanoparticles relative to the linking dithiol molecule, this method can provide a high probability that a single molecule is connecting the two rods. In essence, our methods hence demonstrate the fabrication of a nanostructure with a molecule connected to two nanoelectrodes by bottom-up chemical assembly.
金纳米棒(AuNRs)在从成像到分子电子学等广泛的应用领域中备受关注,并且在过去十年中得到了广泛研究。AuNR应用中的一个重要问题是能否在纳米尺度上以可预测的结构自组装这些纳米棒。我们在此提出一种用单个或少数连接分子将AuNRs端对端连接的新方法。虽然迄今为止文献报道的方法依赖于合成后对AuNRs的修饰,但我们在此用一种水溶性二硫醇官能化聚乙二醇连接分子使金纳米颗粒种子二聚化,并将连接的种子置于与未连接的AuNRs合成相同的生长条件下。这样做,我们获得了很大一部分端对端连接的纳米棒,并且透射电子显微镜提供了AuNRs之间存在1 - 2纳米宽间隙的证据。流动线性二色性表明,正如分子连接纳米间隙所预期的那样,很大一部分纳米棒在溶液中围绕铰链分子是灵活的。通过使用相对于连接二硫醇分子过量的金纳米颗粒,该方法可以提供单个分子连接两根纳米棒的高概率。本质上,我们的方法因此展示了通过自下而上的化学组装制造一种由分子连接到两个纳米电极的纳米结构。