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基于激光诱导微图案化的全聚3,4-乙撑二氧噻吩:聚苯乙烯磺酸盐有机电化学晶体管的高灵敏度生物传感器

Highly Sensitive Biosensors Based on All-PEDOT:PSS Organic Electrochemical Transistors with Laser-Induced Micropatterning.

作者信息

Park Seong Yeon, Son Seo Yeong, Lee Inwoo, Nam Hyuckjin, Ryu Boeun, Park Sejung, Yun Changhun

机构信息

School of Polymer Science and Engineering, Chonnam National University, Gwangju 61186, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2024 Sep 4;16(35):46664-46676. doi: 10.1021/acsami.4c05791. Epub 2024 Aug 24.

Abstract

Recent advances in numerous biological applications have increased the accuracy of monitoring the level of biologically significant analytes in the human body to manage personal nutrition and physiological conditions. However, despite promising reports about costly wearable devices with high sensing performance, there has been a growing demand for inexpensive sensors that can quickly detect biological molecules. Herein, we present highly sensitive biosensors based on organic electrochemical transistors (OECTs), which are types of organic semiconductor-based sensors that operate consistently at low operating voltages in aqueous solutions. Instead of the gold or platinum electrode used in current electrochemical devices, poly(3,4-ethylenedioxythiophene):poly(4-styrenesulfonate) (PEDOT:PSS) was used as both the channel and gate electrodes in the OECT. Additionally, to overcome the patterning resolution limitations of conventional solution processing, we confirmed that the irradiation of a high-power IR laser (λ = 1064 nm) onto the coated PEDOT:PSS film was able to produce spatially resolvable micropatterns in a digital-printing manner. The proposed patterning technique exhibits high suitability for the fabrication of all-PEDOT:PSS OECT devices. The device geometry was optimized by fine-tuning the gate area and the channel-to-gate distance. Consequently, the sensor for detecting ascorbic acid (vitamin C) concentrations in an electrolyte exhibited the best sensitivity of 125 μA dec with a limit of detection of 1.3 μM, which is nearly 2 orders of magnitude higher than previous findings. Subsequently, an all-plastic flexible epidermal biosensor was established by transferring the patterned all-PEDOT:PSS OECT from a glass substrate to a PET substrate, taking full advantage of the flexibility of PEDOT:PSS. The prepared all-plastic sensor device is highly cost-effective and suitable for single-use applications because of its acceptable sensing performance and reliable signal for detecting vitamin C. Additionally, the epidermal sensor successfully obtained the temporal profile of vitamin C in the sweat of a human volunteer after the consumption of vitamin C drinks. We believe that the highly sensitive all-PEDOT:PSS OECT device fabricated using the accurate patterning process exhibits versatile potential as a low-cost and single-use biosensor for emerging bioelectronic applications.

摘要

众多生物应用领域的最新进展提高了监测人体中具有生物学意义的分析物水平以管理个人营养和生理状况的准确性。然而,尽管有关于具有高传感性能的昂贵可穿戴设备的前景看好的报道,但对能够快速检测生物分子的廉价传感器的需求却在不断增长。在此,我们展示了基于有机电化学晶体管(OECT)的高灵敏度生物传感器,OECT是一类基于有机半导体的传感器,在水溶液中能在低工作电压下持续运行。在OECT中,聚(3,4 - 乙撑二氧噻吩):聚(4 - 苯乙烯磺酸盐)(PEDOT:PSS)被用作通道电极和栅电极,取代了当前电化学设备中使用的金或铂电极。此外,为了克服传统溶液处理的图案化分辨率限制,我们证实,将高功率红外激光(λ = 1064 nm)照射到涂覆的PEDOT:PSS薄膜上能够以数字印刷方式产生空间可分辨的微图案。所提出的图案化技术对全PEDOT:PSS OECT器件的制造具有高度适用性。通过微调栅极面积和沟道与栅极的距离对器件几何结构进行了优化。因此,用于检测电解质中抗坏血酸(维生素C)浓度的传感器表现出最佳灵敏度,为125 μA/dec,检测限为1.3 μM,这比之前的发现高出近2个数量级。随后,通过将图案化的全PEDOT:PSS OECT从玻璃基板转移到PET基板上,利用PEDOT:PSS的柔韧性,建立了全塑料柔性表皮生物传感器。制备的全塑料传感器器件具有很高的性价比,由于其可接受的传感性能和用于检测维生素C的可靠信号,适用于一次性应用。此外,表皮传感器在人类志愿者饮用维生素C饮料后成功获得了其汗液中维生素C的时间分布。我们相信,使用精确图案化工艺制造的高灵敏度全PEDOT:PSS OECT器件作为一种低成本、一次性的生物传感器,在新兴生物电子应用中具有广泛的潜力。

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