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首页> 外文期刊>Journal of Physics. Condensed Matter >Insight on agglomerates of gold nanoparticles in glass based on surface plasmon resonance spectrum: study by multi-spheres T-matrix method
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Insight on agglomerates of gold nanoparticles in glass based on surface plasmon resonance spectrum: study by multi-spheres T-matrix method

机译:基于表面等离子体共振谱的玻璃金纳米粒子附聚物的洞察:多球矩阵法研究

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The formation of a localized surface plasmon resonance (SPR) spectrum of randomly distributed gold nanoparticles in the surface layer of silicate float glass, generated and implanted by UV ArF-excimer laser irradiation of a thin gold layer sputter-coated on the glass surface, was studied by the T-matrix method, which enables particle agglomeration to be taken into account. The experimental technique used is promising for the production of submicron patterns of plasmonic nanoparticles (given by laser masks or gratings) without damage to the glass surface. Analysis of the applicability of the multi-spheres T-matrix (MSTM) method to the studied material was performed through calculations of SPR characteristics for differently arranged and structured gold nanoparticles (gold nanoparticles in solution, particles pairs, and core-shell silver-gold nanoparticles) for which either experimental data or results of the modeling by other methods are available. For the studied gold nanoparticles in glass, it was revealed that the theoretical description of their SPR spectrum requires consideration of the plasmon coupling between particles, which can be done effectively by MSTM calculations. The obtained statistical distributions over particle sizes and over interparticle distances demonstrated the saturation behavior with respect to the number of particles under consideration, which enabled us to determine the effective aggregate of particles, sufficient to form the SPR spectrum. The suggested technique for the fitting of an experimental SPR spectrum of gold nanoparticles in glass by varying the geometrical parameters of the particles aggregate in the recurring calculations of spectrum by MSTM method enabled us to determine statistical characteristics of the aggregate: the average distance between particles, average size, and size distribution of the particles. The fitting strategy of the SPR spectrum presented here can be applied to nanoparticles of any nature and in various sub
机译:在硅酸盐浮法玻璃表面层中形成随机分布的金纳米颗粒的局部表面等离子体谐振(SPR)光谱,由UV ARF - 准分子激光照射涂覆在玻璃表面上的薄金层的激光照射。由T型矩阵方法研究,其能够考虑颗粒聚集。所用的实验技术是对生产等离子体纳米颗粒的亚微米图案(通过激光面膜或光栅给出)的产生,而不会损坏玻璃表面。通过计算不同布置和结构化金纳米粒子的SPR特性的计算进行了对研究材料的适用性的分析(溶液,颗粒对中的金纳米粒子,核心 - 壳银 - 金纳米颗粒)可用于其他方法的模拟实验数据或结果。对于玻璃中的研究金纳米颗粒,揭示了其SPR光谱的理论描述需要考虑颗粒之间的等离子体耦合,其可以通过MSTM计算有效地完成。通过粒度和颗粒间距的获得的统计分布表明了相对于所考虑的粒子的数量的饱和行为,这使我们能够确定颗粒的有效骨料,足以形成SPR光谱。通过改变MSTM方法的谱的重复计算中玻璃骨料的几何参数来拟合玻璃中金纳米粒子的实验SPR光谱的建议技术使我们能够确定聚集体的统计特征:粒子之间的平均距离,粒子的平均尺寸和尺寸分布。这里呈现的SCR光谱的拟合策略可以应用于任何性质和各种子的纳米颗粒

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