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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Simulating Plasmon Resonances of Gold Nanoparticles with Bipyramidal Shapes by Boundary Element Methods
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Simulating Plasmon Resonances of Gold Nanoparticles with Bipyramidal Shapes by Boundary Element Methods

机译:用边界元法模拟含金纳米粒子的金纳米粒子的谐振

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Computational modeling and accurate simulations of localized surface plasmon resonance (LSPR) absorption properties are reported for gold nanobipyramids (GNBs), a class of metal nanoparticle that features highly tunable, geometry-dependent optical properties. GNB bicone models with spherical tips performed best in reproducing experimental LSPR spectra while the comparison with other geometrical models provided a fundamental understanding of base shapes and tip effects on the optical properties of GNBs. Our results demonstrated the importance of averaging all geometrical parameters determined from transmission electron microscopy images to build representative models of GNBs. By assessing the performances of LSPR absorption spectra simulations based on a quasi-static approx- imation, we provided an applicability range of this approach as a function of the nanoparticle size, paving the way to the theoretical study of the coupling between molecular electron densities and metal nanoparticles in GNB-based nanohybrid systems, with potential applications in the design of nanomaterials for bioimaging, optics and photocatalysis.
机译:据报道了金纳米吡酰胺(GNBS),一类金属纳米粒子,具有高度可调谐,几何依赖性光学性质的金属纳米颗粒的计算建模和精确模拟。 GNB双合孔型号,具有最佳的转换实验LSPR光谱,而与其他几何模型的比较提供了对基础形状和对GNBS光学性质的基本理解。我们的结果证明了对从透射电子显微镜图像确定的所有几何参数的重要性,以构建GNB的代表性模型。通过评估基于准静态大约的LSPR吸收光谱仿真的性能,我们提供了这种方法的适用性范围作为纳米颗粒尺寸的函数,铺平了分子电子密度和分子电子密度之间的偶联的理论研究的方式金属纳米颗粒在基于GNB的纳米组织系统中,具有潜在的应用,在设计纳米材料设计中,用于生物分析,光学和光催化。

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