Centre for Nano Optics, University of Southern Denmark, Campusvej 55, DK-5230 Odense, Denmark.
Department of Physics and Nanotechnology, Aalborg University , Skjernvej 4A, DK-9220 Aalborg, Denmark.
Langmuir. 2017 Jun 20;33(24):6062-6070. doi: 10.1021/acs.langmuir.7b00772. Epub 2017 Jun 5.
Plasmonic sensor configurations utilizing localized plasmon resonances in silver nanostructures typically suffer from the rapid degradation of silver under ambient atmospheric conditions. In this work, we report on the fabrication and detailed characterization of ensembles of monocrystalline silver nanoparticles (NPs), which exhibit a long-term stability of optical properties under ambient conditions without any protective treatments. Ensembles with different densities (surface coverages) of size-selected NPs (mean diameters of 12.5 and 24 nm) on quartz substrates are fabricated using the cluster-beam technique and characterized by linear spectroscopy, two-photon-excited photoluminescence, surface-enhanced Raman scattering microscopy, and transmission electron, helium ion, and atomic force microscopies. It is found that the fabricated ensembles of monocrystalline silver NPs preserve their plasmonic properties (monitored with optical spectroscopy) and strong field enhancements (revealed by surface-enhanced Raman spectroscopy) at least 5 times longer as compared to chemically synthesized silver NPs with similar sizes. The obtained results are of high practical relevance for the further development of sensors, resonators, and metamaterials utilizing the plasmonic properties of silver NPs.
基于银纳米结构局域等离子体共振的等离子体传感器结构通常会受到银在环境大气条件下迅速降解的影响。在这项工作中,我们报告了单晶银纳米粒子(NPs)的组装体的制造和详细表征,这些组装体在没有任何保护处理的情况下,在环境条件下表现出光学性质的长期稳定性。使用团簇束技术在石英衬底上制造了具有不同密度(表面覆盖率)的尺寸选择的 NPs(平均直径为 12.5 和 24nm)的组装体,并通过线性光谱学、双光子激发光致发光、表面增强拉曼散射显微镜以及透射电子显微镜、氦离子显微镜和原子力显微镜进行了表征。结果发现,与具有相似尺寸的化学合成银 NPs 相比,所制造的单晶银 NPs 组装体至少可以将其等离子体性质(通过光学光谱监测)和强场增强(通过表面增强拉曼散射光谱揭示)保持 5 倍以上。这些结果对于进一步开发利用银 NPs 等离子体性质的传感器、谐振器和超材料具有很高的实际意义。