Department of Chemistry, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul 06974, Korea.
Chem Commun (Camb). 2019 Jan 29;55(10):1466-1469. doi: 10.1039/c8cc09270b.
We explore spatial control of the formation of core-satellite nanoassemblies on glass substrates. UV irradiation leads to the photooxidative desorption of thiol linkers from gold nanoparticles deposited on the substrates, thereby prohibiting further assembly in the irradiated region. The distribution of assemblies and monomers yields a pattern with stark contrasts in colour and Raman enhancement. Our findings can be utilised in the fabrication of microfluidic SERS sensors, colour displays, photonic devices, and metamaterials.
我们探索了在玻璃基底上控制核-卫星纳米组装体形成的空间分布。紫外光辐照导致沉积在基底上的金纳米粒子的硫醇链接物发生光氧化解吸,从而阻止了在辐照区域的进一步组装。组装体和单体的分布产生了具有鲜明对比的颜色和拉曼增强图案。我们的发现可用于制造微流控 SERS 传感器、彩色显示器、光子器件和超材料。