Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7234147 | Biosensors and Bioelectronics | 2013 | 7 Pages |
Abstract
This work reports a high-performance Mn-doped ZnO multilayer structure Love mode surface acoustic wave (SAW) biosensor for the detection of blood sugar. The biosensor was functionalized via immobilizing glucose oxidase onto a pH-sensitive polymer which was attached on Mn-doped ZnO biosensor. The fabricated SAW glucose biosensor is highly sensitive, accurate and fast with good anti-interference. The sensitivity of the SAW glucose biosensor is 7.184 MHz/mM and the accuracy is 6.96Ã10â3 mM, which is sensitive and accurate enough for glucose monitoring. A good degree of reversibility and stability of the glucose sensor is also demonstrated, which keeps a constant differential frequency shift up to 32 days. Concerning the time response to human serum, the glucose sensor shows a value of 4.6±0.4 min when increasing glucose concentrations and 7.1±0.6 min when decreasing, which is less than 10 min and reach the fast response requirement for medical applications. The Mn-doped ZnO Love mode SAW biosensor can be fully integrated with CMOS Si chips and developed as a portable, passive and wireless real time detection system for blood sugar monitoring in human serum.
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Jingting Luo, Pingxiang Luo, Min Xie, Ke Du, Bixia Zhao, Feng Pan, Ping Fan, Fei Zeng, Dongping Zhang, Zhuanghao Zheng, Guangxing Liang,