Hanske Christoph, Tebbe Moritz, Kuttner Christian, Bieber Vera, Tsukruk Vladimir V, Chanana Munish, König Tobias A F, Fery Andreas
Physical Chemistry II, University of Bayreuth , Universitätsstraße 30, 95440 Bayreuth, Germany.
Nano Lett. 2014 Dec 10;14(12):6863-71. doi: 10.1021/nl502776s. Epub 2014 Nov 5.
We present ensembles of surface-ordered nanoparticle arrangements, which are formed by template-assisted self-assembly of monodisperse, protein-coated gold nanoparticles in wrinkle templates. Centimeter-squared areas of highly regular, linear assemblies with tunable line width are fabricated and their extinction cross sections can be characterized by conventional UV/vis/NIR spectroscopy. Modeling based on electrodynamic simulations shows a clear signature of strong plasmonic coupling with an interparticle spacing of 1-2 nm. We find evidence for well-defined plasmonic modes of quasi-infinite chains, such as resonance splitting and multiple radiant modes. Beyond elementary simulations on the individual chain level, we introduce an advanced model, which considers the chain length distribution as well as disorder. The step toward macroscopic sample areas not only opens perspectives for a range of applications in sensing, plasmonic light harvesting, surface enhanced spectroscopy, and information technology but also eases the investigation of hybridization and metamaterial effects fundamentally.
我们展示了表面有序的纳米颗粒排列组合,它们是通过单分散的、蛋白质包覆的金纳米颗粒在皱纹模板中进行模板辅助自组装形成的。制备了具有可调线宽的高度规则的线性组装体的平方厘米级区域,并且它们的消光截面可以通过传统的紫外/可见/近红外光谱进行表征。基于电动力学模拟的建模显示,在颗粒间距为1 - 2纳米时,存在强等离子体耦合的明显特征。我们发现了准无限长链的明确等离子体模式的证据,如共振分裂和多个辐射模式。除了在单个链水平上的基本模拟之外,我们还引入了一个高级模型,该模型考虑了链长分布以及无序性。迈向宏观样品区域的这一步不仅为传感、等离子体光捕获、表面增强光谱和信息技术等一系列应用开辟了前景,而且从根本上简化了对杂交和超材料效应的研究。