Opt Express. 2022 Feb 14;30(4):6051-6060. doi: 10.1364/OE.449675.
Plasmonic imaging has exhibited superiority in label-free and fast detection to single nanoparticles due to its high sensitivity and high temporal resolution, which plays an important role in environmental monitoring and biomedical research. As containing plenty of information associated with particle features, plasmonic imaging has been used for identifying the particle sizes, shapes, and permittivity. Yet, the effects of the nanoparticle features on plasmonic imaging are not investigated, which hinders the in-depth understanding to plasmonic imaging and its applications in particle identification. In this work, we analyzed five types of nanoparticles, including polystyrene (PS), Au, silicon nanospheres as well as PS and Ag nanowires. We illustrated the effects of nanoparticle sizes, shapes, and permittivity on spatial resolution, imaging contrast, and interference fringes. We found that nanoparticle sizes and permittivity influenced the imaging contrast. Via introducing size parameter relevant to interference fringes, the connection between particle shape and reduction rate of size parameter is built, and the effects of particle shapes on the interference patterns are revealed. Our research provides a basis for improving the plasmonic imaging and presents guidance for applications on particle identification in nano-detection, biosensor, and environmental monitoring.
等离子体成像由于其高灵敏度和高时间分辨率,在无需标记和快速检测单个纳米粒子方面表现出优势,在环境监测和生物医学研究中发挥着重要作用。由于等离子体成像包含与粒子特征相关的大量信息,因此它已被用于识别粒子的大小、形状和介电常数。然而,纳米粒子特征对等离子体成像的影响尚未得到研究,这阻碍了对等离子体成像及其在粒子识别中的应用的深入理解。在这项工作中,我们分析了五种类型的纳米粒子,包括聚苯乙烯 (PS)、金、硅纳米球以及 PS 和 Ag 纳米线。我们说明了纳米粒子的大小、形状和介电常数对空间分辨率、成像对比度和干涉条纹的影响。我们发现纳米粒子的大小和介电常数影响成像对比度。通过引入与干涉条纹相关的尺寸参数,建立了粒子形状与尺寸参数减小率之间的关系,并揭示了粒子形状对干涉图案的影响。我们的研究为改进等离子体成像提供了依据,并为纳米检测、生物传感器和环境监测中的粒子识别应用提供了指导。