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用于高精度电位传感的有机电化学晶体管的重构

Reconfiguration of organic electrochemical transistors for high-accuracy potentiometric sensing.

作者信息

Salvigni Luca, Nayak Prem Depan, Koklu Anil, Arcangeli Danilo, Uribe Johana, Hama Adel, Silva Raphaela, Hidalgo Castillo Tania Cecilia, Griggs Sophie, Marks Adam, McCulloch Iain, Inal Sahika

机构信息

Organic Bioelectronics Laboratory, Biological and Environmental Science and Engineering Division, KAUST, Thuwal, Saudi Arabia.

University of Oxford, Department of Chemistry, Oxford, UK.

出版信息

Nat Commun. 2024 Aug 1;15(1):6499. doi: 10.1038/s41467-024-50792-1.

Abstract

Organic electrochemical transistors have emerged as a promising alternative to traditional 2/3 electrode setups for sensing applications, offering in-situ transduction, electrochemical amplification, and noise reduction. Several of these devices are designed to detect potentiometric-derived signals. However, potentiometric sensing should be performed under open circuit potential conditions, allowing the system to reach thermodynamic equilibrium. This criterion is not met by conventional organic electrochemical transistors, where voltages or currents are directly applied to the sensing interface, that is, the gate electrode. In this work, we introduce an organic electrochemical transistor sensing configuration called the potentiometric‑OECT (pOECT), which maintains the sensing electrode under open circuit potential conditions. The pOECT exhibits a higher response than the 2-electrode setup and offers greater accuracy, response, and stability compared to conventional organic electrochemical transistors. Additionally, it allows for the implementation of high-impedance electrodes as gate/sensing surfaces, all without compromising the overall device size.

摘要

有机电化学晶体管已成为用于传感应用的传统二/三电极设置的一种有前途的替代方案,具有原位转导、电化学放大和降噪功能。其中一些器件旨在检测电位衍生信号。然而,电位传感应在开路电位条件下进行,以使系统达到热力学平衡。传统的有机电化学晶体管不满足这一标准,在传统有机电化学晶体管中,电压或电流直接施加到传感界面,即栅电极。在这项工作中,我们引入了一种称为电位有机电化学晶体管(pOECT)的有机电化学晶体管传感配置,该配置可使传感电极保持在开路电位条件下。与两电极设置相比,pOECT表现出更高的响应,并且与传统有机电化学晶体管相比,具有更高的精度、响应和稳定性。此外,它允许将高阻抗电极用作栅极/传感表面,而不会影响整个器件的尺寸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc90/11294360/6be2ac4cbea4/41467_2024_50792_Fig1_HTML.jpg

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