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用于光学生物传感器的光子晶体表面波

Photonic crystal surface waves for optical biosensors.

作者信息

Konopsky Valery N, Alieva Elena V

出版信息

Anal Chem. 2007 Jun 15;79(12):4729-35. doi: 10.1021/ac070275y. Epub 2007 May 12.

Abstract

We present a new optical biosensor technique based on registration of dual optical s-polarized modes on a photonic crystal surface. The simultaneous registration of two optical surface waves with different evanescent depths from the same surface spot permits the segregation of the volume and the surface contributions from an analyte, while the absence of metal damping permits an increase in the propagation length of the optical surface waves and the sensitivity of the biosensor. Our technique was tested with the binding of biotin molecules to a streptavidin monolayer that has been detected with signal/noise ratio of approximately 15 at 1-s signal accumulation time. The detection limit is approximately 20 fg of the analyte on the probed spot of the surface.

摘要

我们提出了一种基于在光子晶体表面记录双光学s偏振模式的新型光学生物传感器技术。从同一表面点同时记录具有不同倏逝深度的两个光学表面波,能够分离分析物的体相贡献和表面贡献,而不存在金属阻尼则可增加光学表面波的传播长度和生物传感器的灵敏度。我们用生物素分子与链霉亲和素单层的结合对该技术进行了测试,在1秒的信号积累时间下,检测的信噪比约为15。表面探测点上分析物的检测限约为20 fg。

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