Alayo Nerea, Conde-Rubio Ana, Bausells Joan, Borrisé Xavier, Labarta Amilcar, Batlle Xavier, Pérez-Murano Francesc
Instituto de Microelectrónica de Barcelona, IMB-CNM (CSIC), Campus UAB, 08193 Bellaterra, Spain.
Nanotechnology. 2015 Nov 6;26(44):445302. doi: 10.1088/0957-4484/26/44/445302. Epub 2015 Oct 15.
Cone-like and empty cup-shaped nanoparticles of noble metals have been demonstrated to provide extraordinary optical properties for use as optical nanoanntenas or nanoresonators. However, their large-scale production is difficult via standard nanofabrication methods. We present a fabrication approach to achieve arrays of nanoparticles with tunable shape and composition by a combination of nanoimprint lithography, hard-mask definition and various forms of metal deposition. In particular, we have obtained arrays of empty cup-shaped Au nanoparticles showing an optical response with distinguishable features associated with the excitations of localized surface plasmons. Finally, this route avoids the most common drawbacks found in the fabrication of nanoparticles by conventional top-down methods, such as aspect ratio limitation, blurring, and low throughput, and it can be used to fabricate nanoparticles with heterogeneous composition.
已证明贵金属的锥形和空杯状纳米颗粒具有非凡的光学特性,可用作光学纳米天线或纳米谐振器。然而,通过标准的纳米制造方法很难大规模生产它们。我们提出了一种制造方法,通过纳米压印光刻、硬掩模定义和各种形式的金属沉积相结合,实现具有可调形状和成分的纳米颗粒阵列。特别是,我们获得了空杯状金纳米颗粒阵列,其显示出与局域表面等离子体激元激发相关的具有可区分特征的光学响应。最后,这条路线避免了传统自上而下方法制造纳米颗粒时最常见的缺点,如纵横比限制、模糊和低通量,并且可用于制造具有异质成分的纳米颗粒。