Huang Hung Ji, Chang Han-Wei, Lee Chia-Yen, Shiao Ming-Hua, Chiu Yen-Ling, Lee Pee-Yew, Lin Yung-Sheng
Department of Electra-Optical Engineering, National Formosa University, Yunlin 632301, Taiwan.
Department of Chemical Engineering, National United University, Miaoli 360302, Taiwan.
IUCrJ. 2022 Apr 2;9(Pt 3):355-363. doi: 10.1107/S2052252522002901. eCollection 2022 May 1.
The effects of synthesis time on the plasmonic properties of Ag dendritic nanoforests on Si substrate (Ag-DNF/Si) samples synthesized through the fluoride-assisted galvanic replacement reaction were investigated. The Ag-DNF/Si samples were characterized using scanning electron microscopy, energy-dispersive X-ray spectroscopy, reflection spectroscopy, X-ray diffraction and surface-enhanced Raman spectroscopy (SERS). The prolonged reaction time led to the growth of an Ag-DNF layer and etched Si hole array. SEM images and variations in the fractal dimension index indicated that complex-structure, feather-like leaves became coral-like branches between 30 and 60 min of synthesis. The morphological variation during the growth of the Ag DNFs resulted in different optical responses to light illumination, especially those of light harvest and energy transformation. The sample achieved the most desirable light-to-heat conversion efficiency and SERS response with a 30 min growth time. A longer synthesis time or thicker Ag-DNF layer on the Si substrate did not have superior plasmonic properties.
研究了合成时间对通过氟化物辅助的电化置换反应合成的硅衬底上的银树枝状纳米森林(Ag-DNF/Si)样品的等离子体特性的影响。使用扫描电子显微镜、能量色散X射线光谱、反射光谱、X射线衍射和表面增强拉曼光谱(SERS)对Ag-DNF/Si样品进行了表征。延长的反应时间导致了Ag-DNF层的生长和蚀刻的硅孔阵列。扫描电子显微镜图像和分形维数指数的变化表明,在30至60分钟的合成过程中,复杂结构的羽毛状叶片变成了珊瑚状分支。Ag DNF生长过程中的形态变化导致了对光照的不同光学响应,特别是光捕获和能量转换的响应。该样品在30分钟的生长时间内实现了最理想的光热转换效率和SERS响应。在硅衬底上更长的合成时间或更厚的Ag-DNF层并没有优异的等离子体特性。