Polymer surface electrochemistry for charge-based sensing in chemoreceptive neuron MOS (CvMOS) transistors

N. Shen, Zengtao Liu, Sheng-Yu Peng, E.A. Minch, E. Kan
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引用次数: 5

Abstract

The charge-based sensing in chemoreceptive neuron MOS (CvMOS) transistors with the extended floating-gate structure has brought forth unique features that are beneficial to the system integration of chemical sensing. Surface chemical functionalization by polymers as the sensing-gate coatings has been employed to selectively sense polar and electrolytic fluids, which are physically isolated front the integrated CMOS circuitry with the modular insulation scheme. The repeatable measurement results have shown both good sensitivity and selectivity. The subthreshold-slope responses for various surface coatings have been analyzed and the corresponding circuitry utilizing the high transconductance gain in the CMOS transistors has been proposed to rapidly extract the encoded information for the CvMOS devices.
化学感受神经元MOS (CvMOS)晶体管中电荷传感的聚合物表面电化学
采用扩展浮栅结构的化学感受神经元MOS (chemical - receptive neuron MOS, CvMOS)晶体管的电荷传感具有独特的特性,有利于化学传感的系统集成。聚合物表面化学功能化作为传感栅极涂层被用于选择性地检测极性和电解流体,这些流体在模块化绝缘方案的集成CMOS电路前物理隔离。结果表明,该方法具有良好的灵敏度和选择性。分析了不同表面涂层的亚阈值斜率响应,并提出了相应的电路,利用CMOS晶体管的高跨导增益来快速提取CvMOS器件的编码信息。
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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