Vernier Charles, Portalès Hervé
Sorbonne Université, CNRS, MONARIS, UMR 8233, 75005 Paris, France.
J Chem Phys. 2024 Sep 28;161(12). doi: 10.1063/5.0228434.
Colloidal solutions of gold nanorods and silver-coated gold nanorods were prepared. The seeded growth synthesis protocols were improved by adding a flocculation purification step. The resulting populations of pure gold nanorods and Au@Ag core-shell cuboids were characterized by very low dispersion in size and shape. UV-vis-near-infrared absorption measurements were performed on several batches of well-calibrated nano-objects, supported by calculations based on the discrete dipole approximation, allowed to highlight the impact of various morphological features on the optical response. In addition to the well-known effect of the nanorod aspect ratio on the shift of the longitudinal surface plasmon resonance mode, special attention was paid to changing either the rounding of the nanorod end-caps or that of the edges of the coating silver shell. Nanorods and cuboids were modeled as superellipsoids. This approach enabled us to model precisely their complex shapes using just a few simple parameters and analyze the evolution of their extinction spectra as a function of the rounding of their tips and edges. Such nano-objects are widely used for various applications in fields such as biomedical, biosensing, or surface-enhanced Raman spectroscopy, thus making it crucial to precisely assess the impact of each morphological feature for optimizing their performance.
制备了金纳米棒和银包覆金纳米棒的胶体溶液。通过添加絮凝纯化步骤改进了种子生长合成方案。所得的纯金纳米棒和金@银核壳长方体群体在尺寸和形状上具有非常低的分散性。对几批校准良好的纳米物体进行了紫外-可见-近红外吸收测量,并基于离散偶极近似进行计算,以突出各种形态特征对光学响应的影响。除了纳米棒纵横比对纵向表面等离子体共振模式位移的众所周知的影响外,还特别关注改变纳米棒端帽的圆度或包覆银壳边缘 的圆度。将纳米棒和长方体建模为超椭球体。这种方法使我们能够仅使用几个简单参数精确地模拟它们的复杂形状,并分析它们的消光光谱随尖端和边缘圆度的变化。此类纳米物体广泛应用于生物医学、生物传感或表面增强拉曼光谱等领域的各种应用中,因此精确评估每个形态特征对优化其性能的影响至关重要。