Bi Cuixia, Song Yahui, Zhao Hongyan, Liu Guangqiang
School of Physics and Physical Engineering, Qufu Normal University Qufu 273165 P. R. China
Academy of Advanced Interdisciplinary Studies, Qilu University of Technology Jinan 250000 P. R. China.
RSC Adv. 2022 Jul 6;12(30):19571-19578. doi: 10.1039/d2ra02651a. eCollection 2022 Jun 29.
In this work, a seed mediated strategy has been proposed to design and fabricate uniform octahedral shaped gold@gold-silver nanoparticles (Au@AuAg NPs) with unique concave structure and an AuAg alloy shell. The morphology and Au/Ag ratio of the Au@AuAg nanostructures can be delicately controlled by varying the concentration of reagents, namely the Au nanorod (NR) seeds, HAuCl and AgNO precursor. Besides, the investigation of the growth mechanism revealed that the morphology of the product also can be controlled by tuning the growth time. Furthermore, uniformly arranged assemblies of concave octahedral Au@AuAg NPs were prepared through a solvent evaporation self-assembly strategy and employed as surface-enhanced Raman scattering (SERS) substrates, effectively applied to the analysis of R6G for the examination of SERS performance. Satisfyingly, owing to the synergistic effect between the Au and Ag elements and concave structure, concave octahedral Au@AuAg NPs exhibit significantly higher SERS enhancement compared with traditional octahedral Au NPs, which have an enhancement factor of ∼1.3 × 10 and a detection limit as low as 10 M. Meanwhile, the SERS substrate reveals an excellent uniformity and reproducibility of the SERS performance. This work opens a new avenue toward bimetallic NPs with concave structure, which have broad application prospects in optics, SERS detection and other fields.
在这项工作中,提出了一种种子介导策略来设计和制备具有独特凹面结构和金-银合金壳的均匀八面体形状的金@金-银纳米颗粒(Au@AuAg NPs)。通过改变试剂浓度,即金纳米棒(NR)种子、HAuCl和AgNO前驱体的浓度,可以精确控制Au@AuAg纳米结构的形态和金/银比例。此外,对生长机制的研究表明,产物的形态也可以通过调整生长时间来控制。此外,通过溶剂蒸发自组装策略制备了均匀排列的凹面八面体Au@AuAg NPs组件,并将其用作表面增强拉曼散射(SERS)基底,有效地应用于R6G分析以检测SERS性能。令人满意的是,由于金和银元素之间的协同效应以及凹面结构,凹面八面体Au@AuAg NPs与传统八面体Au NPs相比表现出显著更高的SERS增强,传统八面体Au NPs的增强因子约为1.3×10,检测限低至10 M。同时,SERS基底显示出SERS性能优异的均匀性和可重复性。这项工作为具有凹面结构的双金属纳米颗粒开辟了一条新途径,其在光学、SERS检测等领域具有广阔的应用前景。