Guan Tianfu, Liang Suzhe, Kang Yicui, Pensa Evangelina, Li Dong, Liang Wenkai, Liang Zhiqiang, Bulut Yusuf, Reck Kristian A, Xiao Tianxiao, Guo Renjun, Drewes Jonas, Strunskus Thomas, Schwartzkopf Matthias, Faupel Franz, Roth Stephan V, Cortés Emiliano, Jiang Lin, Müller-Buschbaum Peter
TUM School of Natural Sciences, Department of Physics, Chair for Functional Materials, Technical University of Munich, James-Franck-Str. 1, 85748 Garching, Germany.
Nanoinstitute Munich, Faculty of Physics, Ludwig-Maximilians-Universität München, 80539 München, Germany.
ACS Appl Mater Interfaces. 2024 Jul 31;16(30):40286-40296. doi: 10.1021/acsami.4c10726. Epub 2024 Jul 16.
Plasmons have facilitated diverse analytical applications due to the boosting signal detectability by hot spots. In practical applications, it is crucial to fabricate straightforward, large-scale, and reproducible plasmonic substrates. Dewetting treatment, applying direct thermal annealing of metal films, has been used as a straightforward method in the fabrication of such plasmonic nanostructures. However, tailoring the evolution of the dewetting process of metal films poses considerable experimental complexities, mainly due to nanoscale structure formation. Here, we use grazing-incidence small- and wide-angle X-ray scattering for the investigation of the high-power impulse magnetron sputter deposition of Ag on self-assembled Au nanoparticle arrays at low-temperature dewetting conditions. This approach allows us to examine both the direct formation of binary Au/Ag nanostructure and the consequential impact of the dewetting process on the spatial arrangement of the bimetallic nanoparticles. It is observed that the dewetting at 100 °C is sufficient to favor the establishment of a homogenized structural configuration of bimetallic nanostructures, which is beneficial for localized surface plasmon resonances (LSPRs). The fabricated metal nanostructures show potential application for the surface-enhanced Raman scattering (SERS) detection of rhodamine 6G molecules. As SERS platform, bimetallic nanostructures formed with dewetting conditions turn out to be superior to those without dewetting conditions. The method in this work is envisioned as a facile strategy for the fabrication of plasmonic nanostructures.
由于热点增强了信号可检测性,等离子体激元促进了多种分析应用。在实际应用中,制造简单、大规模且可重复的等离子体激元基底至关重要。去湿处理,即对金属薄膜进行直接热退火,已被用作制造此类等离子体激元纳米结构的一种简单方法。然而,调整金属薄膜去湿过程的演变带来了相当大的实验复杂性,主要是由于纳米级结构的形成。在此,我们利用掠入射小角和广角X射线散射来研究在低温去湿条件下,银在自组装金纳米颗粒阵列上的高功率脉冲磁控溅射沉积。这种方法使我们能够研究二元金/银纳米结构的直接形成以及去湿过程对双金属纳米颗粒空间排列的后续影响。据观察,100℃下的去湿足以促进双金属纳米结构均匀结构构型的建立,这有利于局域表面等离子体共振(LSPR)。所制备的金属纳米结构在罗丹明6G分子的表面增强拉曼散射(SERS)检测中显示出潜在应用。作为SERS平台,在去湿条件下形成的双金属纳米结构比未经过去湿条件的结构更具优势。本文中的方法被设想为一种制造等离子体激元纳米结构的简便策略。