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首页> 外文期刊>The Journal of Chemical Physics >A discrete interaction model/quantum mechanical method for describing response properties of molecules adsorbed on metal nanoparticles
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A discrete interaction model/quantum mechanical method for describing response properties of molecules adsorbed on metal nanoparticles

机译:描述金属纳米颗粒吸附分子响应特性的离散相互作用模型/量子力学方法

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摘要

A new polarizable quantum mechanics/molecular mechanics method for the calculation of response properties of molecules adsorbed on metal nanoparticles is presented. This method, which we denote the discrete interaction model/quantum mechanics (DIM/QM) method, represents the nanoparticle atomistically which enables the modeling of the influence of the local environment of a nanoparticle surface on the optical properties of a molecule. Using DIM/QM, we investigate the excitation energies of rhodamine-6G (R6G) and crystal violet (CV) adsorbed on silver and gold nanoparticles of different quasispherical shapes and sizes. The metal nanoparticle is characterized by its static total polarizability, a reasonable approximation for frequencies far from the plasmon resonance. We observe that for both R6G and CV, the presence of the nanoparticle shifts the strongest excitation to the red ~40 nm and also increases the oscillator strength of that excitation. The shifts in excitation energies due to the nanoparticle surface are found to be comparable to those due to solvation. We find that these shifts decay quickly as the molecule is moved away from the surface. We also find that the wavelength shift is largest when the transition dipole moment is aligned with the edges of the nanoparticle surface where the electric field is expected to be the largest. These results show that the molecular excitations are sensitive to the local environment on the nanoparticle as well as the specific orientation of the molecule relative to the surface.
机译:提出了一种新的可极化的量子力学/分子力学方法,用于计算吸附在金属纳米颗粒上的分子的响应特性。该方法,我们表示离散相互作用模型/量子力学(DIM / QM)方法,以原子方式表示纳米颗粒,该模型可以对纳米颗粒表面局部环境对分子光学特性的影响进行建模。使用DIM / QM,我们研究了罗丹明6G(R6G)和结晶紫(CV)吸附在不同准球形形状和大小的银和金纳米颗粒上的激发能。金属纳米粒子的特征在于其静态总极化率,这是远离等离子体共振的频率的合理近似值。我们观察到,对于R6G和CV,纳米粒子的存在都会将最强的激发移向红色〜40 nm,并且还增加了该激发的振荡器强度。发现由于纳米颗粒表面引起的激发能的位移与由于溶剂化引起的激发能的位移可比。我们发现,随着分子从表面移开,这些位移迅速衰减。我们还发现,当跃迁偶极矩与预期电场最大的纳米粒子表面的边缘对齐时,波长偏移最大。这些结果表明,分子激发对纳米颗粒上的局部环境以及分子相对于表面的特定取向敏感。

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