Subwavelength Direct Laser Patterning of Conductive Gold Nanostructures by Simultaneous Photopolymerization and Photoreduction

被引:105
作者
Shukla, Shobha [1 ,4 ]
Vidal, Xavier [4 ]
Furlani, Edward P. [4 ]
Swihart, Mark T. [3 ,4 ]
Kim, Kyoung-Tae [1 ]
Yoon, Yong-Kyu [1 ]
Urbas, Augustine [5 ]
Prasad, Paras N. [1 ,2 ,4 ]
机构
[1] SUNY Buffalo, Dept Elect Engn, Buffalo, NY 14260 USA
[2] SUNY Buffalo, Dept Chem, Buffalo, NY 14260 USA
[3] SUNY Buffalo, Dept Chem & Biol Engn, Buffalo, NY 14260 USA
[4] SUNY Buffalo, Inst Lasers Photon & Biophoton, Buffalo, NY 14260 USA
[5] USAF, Res Lab, Wright Patterson AFB, OH 45433 USA
基金
美国国家科学基金会;
关键词
nanocomposites; two-photon lithography; metamaterials; gold nanostructures; nanofabrication; COLLOIDAL GOLD; NANOPARTICLES; FABRICATION; METAMATERIALS; ARRAYS;
D O I
10.1021/nn103015g
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This article presents a new method for fabricating highly conductive gold nanostructures within a polymeric matrix with subwavelength resolution. The nanostructures are directly written in a gold precursor-doped photoresist Using a femtosecond pulsed laser. The laser energy is absorbed by a two-photon dye, which induces simultaneous reduction of gold in the precursor and polymerization of the negative photoresist. This results in gold nanoparticle-doped polymeric lines that exhibit both plasmonic-effects, due to the constituent gold nanoparticles, and relatively high conductivity (within an order of magnitude of the bulk metal), due to the high density of particles within these lines Line widths from 150 to 1000 nm have been achieved with this method. Various optically functional structures have been prepared and their structural and optical properties have been characterized. The influence of laser intensity and scan speed on feature size have been studied and found to be in agreement with predictions of a mathematical model of the process.
引用
收藏
页码:1947 / 1957
页数:11
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