SENSORS AND ACTUATORS B-CHEMICAL | 卷:279 |
Monolithic CMOS sensor platform featuring an array of 9′216 carbon-nanotube-sensor elements and low-noise, wide-bandwidth and wide-dynamic-range readout circuitry | |
Article | |
Dudina, Alexandra1,2  Seichepine, Florent2,3  Chen, Yihui1,4  Stettler, Alexander1  Hierlemann, Andreas1  Frey, Urs1,2,5  | |
[1] Swiss Fed Inst Technol, Bio Engn Lab, Dept Biosyst Sci & Engn, Basel, Switzerland | |
[2] RIKEN QBiC, Kobe, Hyogo, Japan | |
[3] Imperial Coll London, London, England | |
[4] Analog Devices Shanghai Co Ltd, Shanghai, Peoples R China | |
[5] MaxWell Biosyst AG, Basel, Switzerland | |
关键词: Carbon nanotube field-effect transistor; CMOS; Ion-sensitive field-effect transistors; ChemFET; | |
DOI : 10.1016/j.snb.2018.10.004 | |
来源: Elsevier | |
【 摘 要 】
We present the design and characterization of a monolithic complementary metal-oxide-semiconductor (CMOS) biosensor platform comprising of a switch-matrix-based array of 9'216 carbon nanotube field-effect transistors (CNTFETs) and associated readout circuitry. The switch-matrix allows for flexible selection and simultaneous routing of 96 sensor elements to the corresponding readout channels. A low-noise, wide-bandwidth, wide-dynamic-range transimpedance continuous-time amplifier architecture has been implemented to facilitate resistance measurements in the range between 50 k Omega and 1 G Omega at a bandwidth of up to 1 MHz. The achieved accuracy of the resistance measurements over the whole range is 4%. The system has been successfully fabricated and tested and shows a noise performance equal to 2.14 pA(rms) at a bandwidth of 1 kHz and 0.84 nA(rms) at a bandwidth of 1 MHz. A batch integration of the CNTFETs has been achieved by using a dielectrophoresis (DEP)-based manipulation technique. The current-voltage curves of CNTFETs have been acquired, and the sensing capabilities of the system have been demonstrated by recording resistance changes of CNTFETs upon exposure to solutions with different pH values and different concentrations of NaCl. The smallest resolvable concentrations for the respective analytes were estimated to amount to 0.025 pH-units and 4 mM NaCl.
【 授权许可】
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【 预 览 】
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