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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Disposable Plasmonics: Rapid and Inexpensive Large Area Patterning of Plasmonic Structures with CO2 Laser Annealing
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Disposable Plasmonics: Rapid and Inexpensive Large Area Patterning of Plasmonic Structures with CO2 Laser Annealing

机译:一次性等离子:通过CO2激光退火对等离子结构进行快速且廉价的大面积构图

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摘要

We present a method of direct patterning of plasmonic nanofeatures on glass that is fast, scalable, tunable, and accessible to a wide range of users-a unique combination in the context of current nanofabrication options for plasmonic devices. These benefits are made possible by the localized heating and subsequent annealing of thin metal films using infrared light from a commercial CO2 laser system. This approach results in patterning times of 30 mm(2)/min with an average cost of $0.10/mm(2). Colloidal Au nanoparticles with diameters between 15 and 40 nm can be formed on glass surfaces with x-y patterning resolutions of similar to 180 mu m. While the higher resolution provided by lithography is essential in many applications, in cases where the spatial patterning resolution threshold is lower, commercial CO2 laser processing can be 30-fold faster and 400-fold less expensive.
机译:我们提出了一种在玻璃上对等离子纳米特征进行直接图案化的方法,该方法快速,可扩展,可调谐并且可为广大用户使用-在等离子装置的当前纳米制造选项的背景下,这是一种独特的组合。通过使用来自商业CO2激光系统的红外光对金属薄膜进行局部加热和随后的退火处理,可以实现这些优势。这种方法导致图案形成时间为30 mm(2)/ min,平均成本为$ 0.10 / mm(2)。可以在玻璃表面上形成直径为15至40 nm的胶体金纳米颗粒,其x-y图案分辨率约为180微米。尽管在许多应用中,通过光刻技术提供更高的分辨率至关重要,但在空间图案化分辨率阈值较低的情况下,商业CO2激光加工的速度可以提高30倍,而成本则便宜400倍。

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