School of Engineering and Applied Sciences, Harvard University, 9 Oxford Street, Cambridge, Massachusetts 02138, United States.
Nano Lett. 2011 Nov 9;11(11):4859-64. doi: 10.1021/nl203194m. Epub 2011 Oct 25.
DNA nanotechnology provides a versatile foundation for the chemical assembly of nanostructures. Plasmonic nanoparticle assemblies are of particular interest because they can be tailored to exhibit a broad range of electromagnetic phenomena. In this Letter, we report the assembly of DNA-functionalized nanoparticles into heteropentamer clusters, which consist of a smaller gold sphere surrounded by a ring of four larger spheres. Magnetic and Fano-like resonances are observed in individual clusters. The DNA plays a dual role: it selectively assembles the clusters in solution and functions as an insulating spacer between the conductive nanoparticles. These particle assemblies can be generalized to a new class of DNA-enabled plasmonic heterostructures that comprise various active and passive materials and other forms of DNA scaffolding.
DNA 纳米技术为化学组装纳米结构提供了一个通用的基础。等离子体纳米粒子组装体特别有趣,因为它们可以被定制以展示广泛的电磁现象。在这封信中,我们报告了 DNA 功能化纳米粒子组装成杂五聚体簇,其中包含一个较小的金球,周围是四个较大的球的环。在单个簇中观察到磁和类 Fano 共振。DNA 发挥了双重作用:它选择性地在溶液中组装簇,并在导电纳米粒子之间充当绝缘间隔物。这些粒子组装体可以推广到一类新的 DNA 功能化等离子体杂化结构,包括各种有源和无源材料以及其他形式的 DNA 支架。