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基于开尔文连接检测技术的AlGaN/GaN基传感器的最低检测限

Low limit of detection of the AlGaN/GaN-based sensor by the Kelvin connection detection technique.

作者信息

Zhang Hanyuan, Gan Ying, Yang Shu, Sheng Kuang, Wang Ping

机构信息

College of Electrical Engineering, Zhejiang University, 310027 Hangzhou, China.

Biosensor National Special Laboratory, Department of Biomedical Engineering, Zhejiang University, 310027 Hangzhou, China.

出版信息

Microsyst Nanoeng. 2021 Jul 1;7:51. doi: 10.1038/s41378-021-00278-7. eCollection 2021.

Abstract

The AlGaN/GaN-based sensor is a promising POCT (point-of-care-testing) device featuring miniaturization, low cost, and high sensitivity. BNP is an effective protein biomarker for the early diagnosis of HF (heart failure). In this work, a novel AlGaN/GaN device with the Kelvin connection structure and the corresponding detection technique was proposed. This technique can effectively suppress the background noise and improve the SNR (signal-to-noise ratio). A BNP detection experiment was carried out to verify the effectiveness of this technique. It is shown that compared with that of the traditional detection method, the LOD (limit of detection) was improved from 0.47 ng/mL to 1.29 pg/mL. The BNP detection experiment was also carried out with a traditional electrochemical Au-electrode sensor with the same surface functionalization steps. The AlGaN/GaN sensor showed a better LOD than the Au-electrode sensor. Moreover, the influence of AlGaN/GaN sensor package on background noise was investigated with the mechanism of the noise source revealed. Finally, based on the optimized package, the optimal SNR quiescent operating point of the AlGaN/GaN sensor was determined. By biasing the sensor at the optimal quiescent operating point and immobilizing the magnetic beads with anti-BNP on the gate of the AlGaN/GaN sensor, the LOD for BNP detection was further improved to 0.097 pg/mL.

摘要

基于AlGaN/GaN的传感器是一种很有前景的即时检测(POCT)设备,具有小型化、低成本和高灵敏度的特点。脑钠肽(BNP)是用于心力衰竭(HF)早期诊断的一种有效的蛋白质生物标志物。在这项工作中,提出了一种具有开尔文连接结构的新型AlGaN/GaN器件及相应的检测技术。该技术可以有效抑制背景噪声并提高信噪比(SNR)。进行了BNP检测实验以验证该技术的有效性。结果表明,与传统检测方法相比,检测限(LOD)从0.47 ng/mL提高到了1.29 pg/mL。还使用具有相同表面功能化步骤的传统电化学金电极传感器进行了BNP检测实验。AlGaN/GaN传感器显示出比金电极传感器更好的检测限。此外,研究了AlGaN/GaN传感器封装对背景噪声的影响,并揭示了噪声源的机制。最后,基于优化后的封装,确定了AlGaN/GaN传感器的最佳信噪比静态工作点。通过将传感器偏置在最佳静态工作点,并将带有抗BNP的磁珠固定在AlGaN/GaN传感器的栅极上,BNP检测的检测限进一步提高到了0.097 pg/mL。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fed5/8433396/ce8ad4d79cbe/41378_2021_278_Fig1_HTML.jpg

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