纳米光子晶体与微流体通道的共模研究

C. Snyder, A. Kadiyala, Maurya Srungarapu, Yuxin Liu, J. Dawson
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引用次数: 0

摘要

光子晶体是纳米制造的结构,当光通过结构设计时,它会增强光。这些结构通常是由硅制成的,但如果用更经济有效的材料制成,则会有所改进。光子晶体在生物传感中有用途,因为它们可以用来分析DNA和其他分析物。微流体通道用于将不同的分析物和其他样品从一端输送到另一端。微流体作为一种传输手段用于生物传感,通常由生物相容性聚合物制成。光子晶体和微流体通道集成在一起,将能够实现更好的传感能力和大规模生产的成本效益方法。结果将显示从共模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Co-molding of nanoscale photonic crystals and microfluidic channel
Photonic crystals are nanofabricated structures that enhance light as it is passed through the constructed design. These structures are normally fabricated out of silicon but have shown to be an improvement if fabricated from a more cost effective material. Photonic crystals have uses within biosensing as they may be used to analyze DNA and other analytes. Microfluidic channels are used to transport different analytes and other samples from one end to another. Microfluidics are used in biosensing as a means of transport and are typically fabricated from biocompatible polymers. Integrated together, the photonic crystals and microfluidic channels would be able to achieve better sensing capabilities and cost effective methods for large scale production. Results will be shown from the co-molding.
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