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用于下一代柔性酶场效应晶体管(EG-ISFET)传感器芯片的双栅有机薄膜晶体管及多路复用器芯片

Dual-Gate Organic Thin-Film Transistor and Multiplexer Chips for the Next Generation of Flexible EG-ISFET Sensor Chips.

作者信息

Rezaee Ashkan, Carrabina Jordi

机构信息

Department of Microelectronic and System, Autonomous University of Barcelona, 08193 Barcelona, Spain.

出版信息

Sensors (Basel). 2023 Jul 21;23(14):6577. doi: 10.3390/s23146577.

Abstract

Ion-sensitive field-effect transistors (ISFETs) are used as elementary devices to build many types of chemical sensors and biosensors. Organic thin-film transistor (OTFT) ISFETs use either small molecules or polymers as semiconductors together with an additive manufacturing process of much lower cost than standard silicon sensors and have the additional advantage of being environmentally friendly. OTFT ISFETs' drawbacks include limited sensitivity and higher variability. In this paper, we propose a novel design technique for integrating extended-gate OTFT ISFETs (OTFT EG-ISFETs) together with dual-gate OTFT multiplexers (MUXs) made in the same process. The achieved results show that our OTFT ISFET sensors are of the state of the art of the literature. Our microsystem architecture enables switching between the different ISFETs implemented in the chip. In the case of sensors with the same gain, we have a fault-tolerant architecture since we are able to replace the faulty sensor with a fault-free one on the chip. For a chip including sensors with different gains, an external processor can select the sensor with the required sensitivity.

摘要

离子敏感场效应晶体管(ISFET)被用作构建多种类型化学传感器和生物传感器的基本器件。有机薄膜晶体管(OTFT)ISFET使用小分子或聚合物作为半导体,其增材制造工艺成本远低于标准硅传感器,并且具有环保的额外优势。OTFT ISFET的缺点包括灵敏度有限和变异性较高。在本文中,我们提出了一种新颖的设计技术,用于将扩展栅OTFT ISFET(OTFT EG - ISFET)与采用相同工艺制造的双栅OTFT多路复用器(MUX)集成在一起。所取得的结果表明,我们的OTFT ISFET传感器处于文献的先进水平。我们的微系统架构能够在芯片中实现的不同ISFET之间进行切换。对于具有相同增益的传感器,我们拥有容错架构,因为我们能够在芯片上用无故障的传感器替换有故障的传感器。对于包含具有不同增益传感器的芯片,外部处理器可以选择具有所需灵敏度的传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83c4/10384797/3da2ccdcac5f/sensors-23-06577-g001.jpg

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