纳米传感器
材料科学
石墨烯
检出限
纳米技术
生物标志物
电极
光电子学
色谱法
生物化学
物理化学
化学
作者
Cong Huang,Zhifeng Hao,Ziran Wang,Hao Wang,Xuezeng Zhao,Yunlu Pan
标识
DOI:10.1002/admt.202101131
摘要
Abstract An ultraflexible and transparent graphene‐based field‐effect transistors (GFET) wearable nanosensor is presented for detection of body fluid‐biomarkers. The nanosensor is functionalized with a receptor that can specifically bind with the biomarker, resulting in a detectable change in the carrier concentration of the graphene. After recovery from 100 cycles of deformations (bending at radii 175 µm, folding at 150 ° , and shrinking at 50%), no visible mechanical damage is observed, and electrical properties of the nanosensor are also highly consistent. L‐cysteine, associated with various diseases, is chosen as the biomarker to demonstrate the detection capability of the sensor. The nanosensor is capable of consistently and reliably detecting L‐cysteine with a limit of detection of 0.022 × 10 −6 m in undiluted human sweat and 0.043 × 10 −6 m in artificial tears. The sensor is fabricated from the 1 µm transparent polyethylene glycol terephthalate substrate and WO 3 /Au/WO 3 electrode (transparency of 81%), and it can be mounted on the eyeball in tear detection without visual influence. These results demonstrate that the ultraflexible and transparent GFET wearable nanosensor can potentially be helpful in medical detection applications.
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