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等离子体辅助的金纳米粒子掺杂聚合物的3D微结构化

Plasmon assisted 3D microstructuring of gold nanoparticle-doped polymers.

作者信息

Jonušauskas Linas, Lau Marcus, Gruber Peter, Gökce Bilal, Barcikowski Stephan, Malinauskas Mangirdas, Ovsianikov Aleksandr

机构信息

Department of Quantum Electronics, Vilnius University, Saulėtekio Ave. 9, Vilnius LT-10222, Lithuania.

出版信息

Nanotechnology. 2016 Apr 15;27(15):154001. doi: 10.1088/0957-4484/27/15/154001. Epub 2016 Feb 29.

Abstract

3D laser lithography of a negative photopolymer (zirconium/silicon hybrid solgel SZ2080) doped with gold nanoparticles (Au NPs) is performed with a 515 nm and 300 fs laser system and the effect of doping is explored. By varying the laser-generated Au NP doping concentration from 4.8 · 10(-6) wt% to 9.8 · 10(-3) wt% we find that the fabricated line widths are enlarged by up to 14.8% compared to structures achieved in pure SZ2080. While implicating a positive effect on the photosensitivity, the doping has no adverse impact on the mechanical quality of intricate 3D microstructures produced from the doped nanocompound. Additionally, we found that SZ2080 increases the long term (∼months) colloidal stability of Au NPs in isopropanol. By discussing the nanoparticle-light interaction in the 3D polymer structures we provide implications that our findings might have on other fields, such as biomedicine and photonics.

摘要

使用515纳米、300飞秒激光系统对掺杂了金纳米颗粒(Au NPs)的负性光聚合物(锆/硅混合溶胶凝胶SZ2080)进行3D激光光刻,并探究掺杂的效果。通过将激光生成的Au NP掺杂浓度从4.8·10(-6)wt%变化到9.8·10(-3)wt%,我们发现与纯SZ2080中形成的结构相比,制造的线宽扩大了高达14.8%。虽然表明对光敏性有积极影响,但掺杂对由掺杂纳米化合物制成的复杂3D微结构的机械质量没有不利影响。此外,我们发现SZ2080提高了Au NPs在异丙醇中的长期(约几个月)胶体稳定性。通过讨论3D聚合物结构中的纳米颗粒-光相互作用,我们阐述了我们的发现可能对生物医学和光子学等其他领域产生的影响。

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