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离子选择性有机电化学晶体管:近期进展与挑战

Ion-Selective Organic Electrochemical Transistors: Recent Progress and Challenges.

作者信息

Li Yang, Cui Binbin, Zhang Shiming, Li Bingxiang, Li Jianmin, Liu Shujuan, Zhao Qiang

机构信息

College of Electronic and Optical Engineering, and College of Flexible Electronics (Future Technology), Nanjing University of Posts and Telecommunications (NJUPT), 9 Wenyuan Road, Nanjing, Jiangsu, 210023, China.

Department of Electrical and Electronic Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong SAR, China.

出版信息

Small. 2022 May;18(19):e2107413. doi: 10.1002/smll.202107413. Epub 2022 Feb 18.

Abstract

The charged species inside biofluids (blood, interstitial fluid, sweat, saliva, urine, etc.) can reflect the human body's physiological conditions and thus be adopted to diagnose various diseases early. Among all personalized health management applications, ion-selective organic electrochemical transistors (IS-OECTs) have shown tremendous potential in point-of-care testing of biofluids due to low cost, ease of fabrication, high signal amplification, and low detection limit. Moreover, IS-OECTs exhibit excellent flexibility and biocompatibility that enable their application in wearable bioelectronics for continuous health monitoring. In this review, the working principle of IS-OECTs and the recent studies of IS-OECTs for performance improvement are reviewed. Specifically, contemporary studies on material design and device optimization to enhance the sensitivity of IS-OECTs are discussed. In addition, the progress toward the commercialization of IS-OECTs is highlighted, and the recently proposed solutions or alternatives are summarized. The main challenges and perspectives for fully exploiting IS-OECTs toward future preventive and personal medical devices are addressed.

摘要

生物流体(血液、组织液、汗液、唾液、尿液等)中的带电物质可以反映人体的生理状况,因此可用于早期诊断各种疾病。在所有个性化健康管理应用中,离子选择性有机电化学晶体管(IS-OECTs)由于成本低、易于制造、信号放大率高和检测限低,在生物流体的即时检测中显示出巨大潜力。此外,IS-OECTs具有出色的柔韧性和生物相容性,使其能够应用于可穿戴生物电子设备中进行连续健康监测。在这篇综述中,我们回顾了IS-OECTs的工作原理以及近期为提高其性能而开展的研究。具体而言,讨论了当代关于材料设计和器件优化以提高IS-OECTs灵敏度的研究。此外,强调了IS-OECTs商业化的进展,并总结了最近提出的解决方案或替代方案。探讨了充分利用IS-OECTs用于未来预防和个人医疗设备的主要挑战和前景。

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