Hamans Ruben F, Parente Matteo, Garcia-Etxarri Aitzol, Baldi Andrea
Department of Physics and Astronomy, Vrije Universiteit Amsterdam, De Boelelaan 1081, 1081 HV Amsterdam, The Netherlands.
Dutch Institute for Fundamental Energy Research (DIFFER), De Zaale 20, 5612 AJ Eindhoven, The Netherlands.
J Phys Chem C Nanomater Interfaces. 2022 May 26;126(20):8703-8709. doi: 10.1021/acs.jpcc.2c01251. Epub 2022 May 17.
Silver nanowires are used in many applications, ranging from transparent conductive layers to Raman substrates and sensors. Their performance often relies on their unique optical properties that emerge from localized surface plasmon resonances in the ultraviolet. To tailor the nanowire geometry for a specific application, a correct understanding of the relationship between the wire's structure and its optical properties is therefore necessary. However, while the colloidal synthesis of silver nanowires typically leads to structures with pentagonally twinned geometries, their optical properties are often modeled assuming a cylindrical cross-section. Here we highlight the strengths and limitations of such an approximation by numerically calculating the optical and electrical response of pentagonally twinned silver nanowires and nanowire networks. We find that our accurate modeling is crucial to deduce structural information from experimentally measured extinction spectra of colloidally synthesized nanowire suspensions and to predict the performance of nanowire-based near-field sensors. On the contrary, the cylindrical approximation is fully capable of capturing the optical and electrical performance of nanowire networks used as transparent electrodes. Our results can help assess the quality of nanowire syntheses and guide in the design of optimized silver nanowire-based devices.
银纳米线被应用于许多领域,从透明导电层到拉曼基底和传感器。它们的性能通常依赖于其独特的光学性质,这些性质源于紫外光中的局域表面等离子体共振。因此,为了针对特定应用定制纳米线的几何形状,正确理解纳米线结构与其光学性质之间的关系是必要的。然而,虽然银纳米线的胶体合成通常会产生具有五边形孪晶几何结构的结构,但其光学性质通常是在假设圆柱形横截面的情况下进行建模的。在这里,我们通过数值计算五边形孪晶银纳米线和纳米线网络的光学和电学响应,突出了这种近似方法的优点和局限性。我们发现,我们的精确建模对于从胶体合成的纳米线悬浮液的实验测量消光光谱中推断结构信息以及预测基于纳米线的近场传感器的性能至关重要。相反,圆柱形近似完全能够捕捉用作透明电极的纳米线网络的光学和电学性能。我们的结果有助于评估纳米线合成的质量,并指导优化基于银纳米线的器件的设计。