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Graphene Field Effect Transistors for Biomedical Applications: Current Status and Future Prospects

机译:用于生物医学应用的石墨烯场效应晶体管:现状与未来展望

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摘要

Since the discovery of the two-dimensional (2D) carbon material, graphene, just over a decade ago, the development of graphene-based field effect transistors (G-FETs) has become a widely researched area, particularly for use in point-of-care biomedical applications. G-FETs are particularly attractive as next generation bioelectronics due to their mass-scalability and low cost of the technology’s manufacture. Furthermore, G-FETs offer the potential to complete label-free, rapid, and highly sensitive analysis coupled with a high sample throughput. These properties, coupled with the potential for integration into portable instrumentation, contribute to G-FETs’ suitability for point-of-care diagnostics. This review focuses on elucidating the recent developments in the field of G-FET sensors that act on a bioaffinity basis, whereby a binding event between a bioreceptor and the target analyte is transduced into an electrical signal at the G-FET surface. Recognizing and quantifying these target analytes accurately and reliably is essential in diagnosing many diseases, therefore it is vital to design the G-FET with care. Taking into account some limitations of the sensor platform, such as Debye–Hükel screening and device surface area, is fundamental in developing improved bioelectronics for applications in the clinical setting. This review highlights some efforts undertaken in facing these limitations in order to bring G-FET development for biomedical applications forward.
机译:自从十多年前发现二维(2D)碳材料石墨烯以来,基于石墨烯的场效应晶体管(G-FET)的开发已成为一个广泛研究的领域,尤其是在点对点应用中。护理生物医学应用。 G-FET具有大规模可扩展性和较低的制造成本,因此作为下一代生物电子产品特别有吸引力。此外,G-FETs提供了完成无标签,快速,高度灵敏的分析以及高样品通量的潜力。这些特性以及集成到便携式仪器中的潜力,有助于G-FET在现场诊断中的适用性。这篇综述着重于阐明基于生物亲和力的G-FET传感器领域的最新发展,从而将生物受体与目标分析物之间的结合事件转化为G-FET表面的电信号。准确可靠地识别和量化这些目标分析物对于诊断许多疾病至关重要,因此,精心设计G-FET至关重要。考虑到传感器平台的某些局限性,例如德拜-休克尔筛选和设备表面积,对于开发用于临床环境的改进型生物电子学至关重要。这篇综述重点介绍了在克服这些局限性方面所做的一些努力,以推动生物医学应用的G-FET开发。

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