Ren Guanpin, Xu Limin, Zhan Huan, Liu Shuang, Jiang Wei, Li Ru
Appl Opt. 2022 May 20;61(15):4567-4570. doi: 10.1364/AO.457426.
Gold nanoparticles with strong localized plasmonic effects have found wide applications in photoacoustic imaging, which are ascribed to their unique microscopic mechanism of converting photons to ultrasound. In this report, we quantitatively model the time-resolved temperature field, thermal expansion, and pressure distribution based on the finite element analysis method, and two-dimensional gold nanoparticles spanning from the triangle, square, pentagon, and hexagon to the circle have been systematically studied. Results show that the shape of gold nanoparticles has a nontrivial effect on photoacoustic conversion efficiency, and the square-shaped gold structure exhibits the best performance. Our findings could shed light on the shape design of high-performance photoacoustic agents in the future.
具有强局域表面等离子体效应的金纳米颗粒在光声成像中得到了广泛应用,这归因于其将光子转换为超声的独特微观机制。在本报告中,我们基于有限元分析方法对时间分辨温度场、热膨胀和压力分布进行了定量建模,并系统研究了从三角形、正方形、五边形、六边形到圆形的二维金纳米颗粒。结果表明,金纳米颗粒的形状对光声转换效率有显著影响,方形金结构表现出最佳性能。我们的研究结果可为未来高性能光声剂的形状设计提供启示。