无线
无线传感器网络
计算机科学
石墨烯
电气工程
电信
材料科学
工程类
计算机网络
纳米技术
作者
Giorgio Biagetti,Paolo Crippa,Michele Alessandrini,Daniele Di Marino
出处
期刊:IEEE Sensors Journal
[Institute of Electrical and Electronics Engineers]
日期:2023-06-05
卷期号:23 (15): 17011-17024
被引量:3
标识
DOI:10.1109/jsen.2023.3281156
摘要
Graphene field-effect transistors (gFETs) are gaining popularity for the realization of biological sensors as their graphene active area provides a convenient basis for attaching organic substances, such as appropriately engineered receptors. The presence of a particular biological agent then translates in the modification of the electrical characteristics of the gFET. We thus developed a compact, portable system that is able to accurately measure said electrical characteristics with high accuracy, by automatically compensating its own offsets and errors. The acquisition device we here present is able to measure drain currents with a nominal accuracy of 0.1 % and with an RMS noise as low as 22 pA, up to a maximum of 125 μA (22 bits effective resolution), and gFET channel resistances with a nominal accuracy of 0.01 % ± 0.1 Ω and with an RMS noise as low as 2.13 μV in the range from 100 Ω to 1 MΩ. Due to its performance, small dimensions, long battery life, it can be used both for scientific research, where portability and ease of use are key features when operating in potentially hazardous environments due to the presence of biological agents, and as a fully-automated detector when coupled with the appropriate sensor, as it can perform thousands of measures on a single battery charge and be completely remotely controlled over a Bluetooth low energy (BLE) connection.
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