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Miniaturized fluorescence excitation platform with optical fiber for bio-detection chips

机译:带光纤的微型荧光激发平台,用于生物检测芯片

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This paper presents a new research study on the fabrication of a fluorescence bio-detection chip with an optical fiber transmission platform. Anisotropic wet etching on (100) silicon wafers to fabrication V-groove for optical fiber alignment and micro-mirror were included. Combined with anodic bonding technique to adhere glass, silicon structure and optical fiber for a fluorescence excitation platform was completed. In this study, a 40% KOH etching solution was used to study the parameter effect. The results show that the working temperature is the main parameter that significantly effects the etch rate. The anisotropic etching resulted in 54.7° reflective mirrors and the reflectivity for the optical beam was also examined. The surface roughness of the micro-mirror is Ra 4.1 nm measured using AFM providing excellent optical reflection. The incident light and beam profiles were also examined for further study. This study shows that this micro-platform is adaptable for fluorescence bio-detection.
机译:本文提出了一种利用光纤传输平台制造荧光生物检测芯片的新研究。包括在(100)硅片上进行各向异性湿法刻蚀,以制作用于光纤对准的V型槽和微镜。结合阳极键合技术,将玻璃,硅结构和光纤粘接成荧光激发平台。在这项研究中,使用40%KOH蚀刻溶液来研究参数效果。结果表明,工作温度是显着影响蚀刻速率的主要参数。各向异性蚀刻产生了54.7°的反射镜,还检查了光束的反射率。使用AFM测得的微镜表面粗糙度为Ra 4.1 nm,可提供出色的光反射。还检查了入射光和光束轮廓以作进一步研究。这项研究表明,这种微平台适用于荧光生物检测。

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