首页> 外文会议>Conference on Plasmonics: Metallic Nanostructures and their Optical Properties >DESIGN AND FABRICATION OF GOLD NANOSTRUCTURES WITH NANOSPHERE LITHOGRAPHY FOR LSPR APPLICATIONS
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DESIGN AND FABRICATION OF GOLD NANOSTRUCTURES WITH NANOSPHERE LITHOGRAPHY FOR LSPR APPLICATIONS

机译:LSPR应用与纳米光刻金纳米结构的设计与制造

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This paper reports the details regarding the design and fabrication of gold nanostractures on glass substrates through nanosphere lithography (NSL) for the application of localized surface plasmon resonance (LSPR), which can be used for biosensors. It is realized through gold film deposition on nanospheres dispersed on a surface and subsequent anisotropic etching. Depending on the gold deposition and etching conditions, a variety of gold nanostructure shapes can be obtained. So far through this method, only 2D nanocrescents are reported. In this paper it is pointed out that both 2D and 3D non-conformal nanostrucrures can be fabricated, and some 2D and 3D profiles of the obtainable nanostiuctures are simulated by our programs under various deposition and etching conditions. The fabrication processes of the nanostrucrures on glass substrates are also reported, and the simulated profiles of such nanostrucrures coincide well with the experimental results. These results prove that our profile simulation program can realize the design of 2D and 3D nanostructures obtainable by nanosphere lithography, and reduce the effort and cost for achieving optimized nanostrucrures by experiments in the trial and error stage.
机译:本文通过纳米光刻(NSL)向透过纳米光谱(NSL)进行局部表面等离子体共振(LSPR)来报告关于玻璃基板上的金纳米纳米的设计和制造细节的细节,其可用于生物传感器。通过在分散在表面上的纳米球上的金膜沉积和随后的各向异性蚀刻来实现。取决于金沉积和蚀刻条件,可以获得各种金纳米结构形状。到目前为止,通过这种方法,仅报告了2D纳入者。在本文中,指出,可以制造2D和3D非共置纳米腹瘤,并且我们在各种沉积和蚀刻条件下通过我们的节目模拟可获得的纳米瘘的一些2D和3D轮廓。还报道了玻璃基板上的纳米抑制的制造过程,并且这种纳米抑制的模拟曲线与实验结果吻合良好。这些结果证明,我们的简档仿真程序可以通过纳米光刻来实现可获得的2D和3D纳米结构的设计,并通过试验和误差阶段的实验降低实现优化纳米轨迹的努力和成本。

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