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An optical biosensor using MEMS-based V-grooves

机译:使用基于MEMS的V型槽的光学生物传感器

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摘要

An optical fiber biosensor featuring miniaturization, electromagnetic interference (EMI)-immunity, and flexibility is presented. The sensor was fabricated by aligning two gold-deposited optical single-mode fiber facets inside V-grooves on a silicon chip to form a Fabry-Perot (FP) cavity. The mirrors on the fiber facets were made of deposited gold (Au) films, which provided a high finesse to produce a highly sensitivity. Microelectromechanical systems (MEMS) fabrication techniques were used to precisely control the profile and angle of the V-grooves on the silicon. The biotin-terminated thiol molecule was firstly immobilized on the gold surface. Subsequently, the molecules of Neutravidin were specifically bound to the biotin-terminated self-assembled monolayers (SAMs). The induced changes of cavity length and refractive index (RI) upon the gold surface lead to an optical path difference (OPD) of the FP cavity, which was detected by demodulating the transmission spectrum phase shift. By taking advantage of MEMS techniques, multiple biosensors can be integrated into one small silicon chip for detecting various biomolecule targets simultaneously.
机译:提出了一种具有微型化,电磁干扰(EMI)免疫力和灵活性的光纤生物传感器。传感器是通过在硅芯片上的V形槽内对齐两个金沉积的光学单模光纤刻面而制成的,以形成Fabry-Perot(FP)腔。光纤端面上的反射镜由沉积的金(Au)膜制成,该膜具有很高的精细度,可以产生很高的灵敏度。微机电系统(MEMS)制造技术用于精确控制硅上V型槽的轮廓和角度。首先将生物素封端的硫醇分子固定在金表面。随后,将中性亲和素分子特异性结合至生物素封端的自组装单分子层(SAMs)。在金表面上引起的腔长度和折射率(RI)的变化导致FP腔的光程差(OPD),可通过对透射光谱相移进行解调来检测。通过利用MEMS技术,可以将多个生物传感器集成到一个小的硅芯片中,以同时检测各种生物分子目标。

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