材料科学
制作
天线(收音机)
飞秒
光电子学
激光烧蚀
隐形眼镜
烧蚀
激光器
镜头(地质)
光学
计算机科学
电信
医学
物理
工程类
病理
航空航天工程
替代医学
作者
Hadi Mirzajani,Emin Istif,Taher Abbasiasl,Fariborz Mirlou,Ecem Ezgi Özkahraman,Murat Hasanreisoğlu,Levent Beker
标识
DOI:10.1002/admt.202101629
摘要
Abstract Smart contact lenses (SCLs) have drawn substantial interest for continuous health monitoring applications. Even though most of the reported works utilize near‐field communication (NFC) or inductive coupling for wireless powering and data transmission, developing a scalable and rapid fabrication technique for annular ring antennas confined in a small contact lens area is still an unsolved challenge. Here, femtosecond laser ablation is employed for the first time as a simple, single‐step, and highly precise fabrication technique for NFC antennas using conventional flexible printed circuit board materials. Antenna lines with depth and width of 9 and 35 μm are achieved, respectively. The antenna with a footprint of 19.5 mm 2 is characterized in biological solution followed by aging, and bending tests, and a frequency deviation of less than %1 is recorded. A real‐life application is demonstrated by fabricating an SCL embedded with the antenna, an NFC chip, and an electrochemical sensor for wireless monitoring of glucose in artificial tear solution by a smartphone. The device could successfully quantify biologically relevant glucose concentrations ranging from 0.2 to 1 mM with a limit‐of‐detection of 66 μM. In addition, device response to interfering molecules is less than ±1 nA, and the spike‐and‐recovery test is successfully demonstrated.
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