A CMOS capacitive dopamine sensor with Sub-nM detection resolution

Shi-Wei Wang, Chih-Heng Lin, Yuh-Shyong Yang, M. S. Lu
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引用次数: 7

Abstract

Interdigitated microelectrodes integrated with CMOS sensing circuitry are presented in this work for detection of the neurotransmitter dopamine and as an immunosensor with sensitivity enhanced by gold nanoparticles. Microelectrodes covered by the silicon dioxide layer are fabricated through a maskless post-CMOS process. Charged biomolecules bind to the functionalized oxide surface after immobilization, producing a capacitive change for the underlying electrodes. Three electrode designs with gaps from 0.5 µm to 1 µm and capacitance values from 13 fF to 925 fF are tested. The capacitance increases with respect to the concentrations of nanoparticle and dopamine. The minimum detectable concentration of dopamine is 540 pM at a 1-Hz bandwidth.
具有亚纳米检测分辨率的CMOS电容式多巴胺传感器
在这项工作中,集成了CMOS传感电路的交叉指状微电极被用于检测神经递质多巴胺,并作为一种免疫传感器,通过金纳米颗粒增强了灵敏度。由二氧化硅层覆盖的微电极通过无掩膜后cmos工艺制备。固定后,带电的生物分子结合到功能化的氧化物表面,为下面的电极产生电容性变化。测试了三种电极设计,其间隙从0.5 μ m到1 μ m,电容值从13 fF到925 fF。电容随纳米粒子和多巴胺浓度的增加而增加。在1hz带宽下,多巴胺的最低检测浓度为540pm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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