Zhiheng Mu, Zhijiao Yang, Xingfan Han, Yanpeng Li, Xiaohong Sun
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Tapered No-Core fiber sensor coated with graphene oxide for the detection of human hemoglobin
Abnormal hemoglobin (Hb) concentration is closely related to diseases such as anemia and kidney disease, and the development of highly sensitive and anti-interference Hb detection technology has important clinical implications. In this article, we develop a tapered no-core fiber (TNCF) sensor for detection of Hb concentration. By coating a graphene oxide (GO) thin film on the TNCF surface, a high sensitivity of 3.893 nm/(mg/ml) is obtained for the Hb solution with a concentration range of 0–1.0 mg/ml. Furthermore, through the sensing experiment of adding interfering substances to the Hb test solution, we have demonstrated the repeatability and anti-interference ability of the sensor. This study opens a new avenue for the application of TNCF in biochemical sensing and proves their potential for high-sensitivity and stable detection, demonstrating significant scientific and practical value.
期刊介绍:
Innovations in optical fiber technology are revolutionizing world communications. Newly developed fiber amplifiers allow for direct transmission of high-speed signals over transcontinental distances without the need for electronic regeneration. Optical fibers find new applications in data processing. The impact of fiber materials, devices, and systems on communications in the coming decades will create an abundance of primary literature and the need for up-to-date reviews.
Optical Fiber Technology: Materials, Devices, and Systems is a new cutting-edge journal designed to fill a need in this rapidly evolving field for speedy publication of regular length papers. Both theoretical and experimental papers on fiber materials, devices, and system performance evaluation and measurements are eligible, with emphasis on practical applications.