Department of Chemistry , The Pennsylvania State University , 104 Chemistry Building , University Park , Pennsylvania 16802 , United States.
J Chem Theory Comput. 2018 Nov 13;14(11):5896-5903. doi: 10.1021/acs.jctc.8b00893. Epub 2018 Nov 5.
In this work, we extend the discrete interaction model/quantum mechanical (DIM/QM) method to simulate plasmon-enhanced two-photon absorption (PETPA). The metal nanoparticle is treated atomistically by means of electrodynamics, while the molecule is described using damped cubic response theory within a time-dependent density functional theory framework. Using DIM/QM, we study the PETPA of para-nitroaniline ( p-NA) with a focus on the local and image field effects, the molecular orientation effects, and the molecule-nanoparticle distance effects. Our findings show that the enhancement is more complex than the simple | E| enhancement mechanism, where | E| is the local field at the position of the molecule. Because of specific interactions with the nanoparticle, we find that a TPA dark state of p-NA can be significantly enhanced through a coupling with the plasmon excitation. The results presented in this work illustrate that the coupling between molecular excitations and plasmons can give rise to unusual and complex behavior in nonlinear spectroscopy that cannot simply be understood by considering the optical properties of the individual molecules and nanoparticles separately. The method presented here provides detailed insights into the enhancement of nonlinear optical properties of molecules coupled to plasmonic nanoparticles.
在这项工作中,我们将离散相互作用模型/量子力学(DIM/QM)方法扩展到模拟等离子体增强双光子吸收(PETPA)。通过电动力学对金属纳米粒子进行原子处理,而分子则使用阻尼立方响应理论在含时密度泛函理论框架内进行描述。通过 DIM/QM,我们研究了对硝基苯胺(p-NA)的 PETPA,重点关注局域场和镜像场效应、分子取向效应以及分子-纳米粒子距离效应。我们的发现表明,增强比简单的|E|增强机制更为复杂,其中|E|是分子位置的局部场。由于与纳米粒子的特定相互作用,我们发现通过与等离子体激发的耦合,可以显著增强 p-NA 的 TPA 暗态。本工作中的结果表明,分子激发与等离子体之间的耦合可以导致非线性光谱中出现异常和复杂的行为,而不能简单地通过分别考虑单个分子和纳米粒子的光学性质来理解。这里提出的方法提供了对与等离子体纳米粒子耦合的分子的非线性光学性质增强的详细了解。