Tao Andrea, Sinsermsuksakul Prasert, Yang Peidong
Department of Chemistry, University of California, Berkeley, California 94720, USA.
Nat Nanotechnol. 2007 Jul;2(7):435-40. doi: 10.1038/nnano.2007.189. Epub 2007 Jul 1.
Silver nanocrystals are ideal building blocks for plasmonic materials that exhibit a wide range of unique and potentially useful optical phenomena. Individual nanocrystals display distinct optical scattering spectra and can be assembled into hierarchical structures that couple strongly to external electromagnetic fields. This coupling, which is mediated by surface plasmons, depends on the shape and arrangement of the nanocrystals. Here we demonstrate the bottom-up assembly of polyhedral silver nanocrystals into macroscopic two-dimensional superlattices using the Langmuir-Blodgett technique. Our ability to control interparticle spacing, density and packing symmetry allows for tunability of the optical response over the entire visible range. This assembly strategy offers a new, practical approach to making novel plasmonic materials for application in spectroscopic sensors, subwavelength optics and integrated devices that utilize field-enhancement effects.
银纳米晶体是等离子体材料的理想构建单元,这类材料展现出广泛的独特且可能有用的光学现象。单个纳米晶体呈现出独特的光学散射光谱,并且可以组装成分级结构,这些结构能与外部电磁场强烈耦合。这种由表面等离子体介导的耦合取决于纳米晶体的形状和排列。在此,我们展示了使用朗缪尔-布洛杰特技术将多面体银纳米晶体自下而上组装成宏观二维超晶格。我们控制粒子间间距、密度和堆积对称性的能力使得在整个可见光范围内的光学响应具有可调性。这种组装策略为制造新型等离子体材料提供了一种新的实用方法,可应用于光谱传感器、亚波长光学器件以及利用场增强效应的集成器件。