Zheng Zesheng, Bindra Anivind Kaur, Jin Haoran, Sun Quqin, Liu Siyu, Zheng Yuanjin
Nanyang Technological University, School of Electrical and Electronic Engineering, Singapore 639798, Singapore.
Nanyang Technological University, School of Physical and Mathematical Sciences, Singapore 637371, Singapore.
Biomed Opt Express. 2021 Nov 2;12(12):7280-7296. doi: 10.1364/BOE.434207. eCollection 2021 Dec 1.
The morphology-dependent resonances (MDRs) hotspot, ubiquity formed between the pairs of nanoparticles in close vicinity, has garnered considerable recent attention. By extending this phenomenon to pulse-laser irradiated nanoparticle suspension, we demonstrate that such collective optical/thermal enhancement can give rise to the nonlinear photoacoustic (PA) generation. In this study, a temporal-spatial analytical expression is derived to quantitatively describe the nonlinear PA signal generation from nanoparticles, incorporating the Grüneisen increase at the microscopic individual particle level and MRDs enhancement at the macroscopic suspension level. The dependence of PA nonlinearity on the critical contributors, including the laser pulse width, the particle size, and the statistical interparticle spacing, is quantitatively discussed. The theory is well validated with the finite element method (FEM) and experimentally proved with semiconducting polymer nanoparticles (SPN) suspension. This work may pave a new direction towards effective MDR based nonlinear PA contract agent design.
形态依赖共振(MDR)热点,即在紧邻的纳米颗粒对之间普遍形成的热点,近来已引起了相当多的关注。通过将这一现象扩展到脉冲激光辐照的纳米颗粒悬浮液中,我们证明了这种集体光学/热增强能够产生非线性光声(PA)信号。在本研究中,我们推导了一个时空解析表达式,以定量描述纳米颗粒产生的非线性PA信号,该表达式纳入了微观单个颗粒水平上的格林艾森系数增加以及宏观悬浮液水平上的MDR增强。我们定量讨论了PA非线性对包括激光脉冲宽度、颗粒尺寸和统计颗粒间间距在内的关键因素的依赖性。该理论通过有限元方法(FEM)得到了很好的验证,并通过半导体聚合物纳米颗粒(SPN)悬浮液进行了实验证明。这项工作可能为基于有效MDR的非线性PA造影剂设计开辟一个新方向。