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Scalable Production of Sensor Arrays Based on High-Mobility Hybrid Graphene Field Effect Transistors

机译:基于高迁移率混合石墨烯场效应晶体管的传感器阵列的可扩展生产

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We have developed a scalable fabrication process for the production of DNA biosensors based on gold nanoparticle-decorated graphene field effect transistors (AuNP-Gr-FETs), where monodisperse AuNPs are created through physical vapor deposition followed by thermal annealing. The FETs are created in a four-probe configuration, using an optimized bilayer photolithography process that yields chemically clean devices, as confirmed by XPS and AFM, with high carrier mobility (3590 +/- 710 cm2/V.s) and low unintended doping (Dirac voltages of 9.4 +/- 2.7 V). The AuNP-Gr-FETs were readily functionalized with thiolated probe DNA to yield DNA biosensors with a detection limit of 1 nM and high specificity against noncomplementary DNA. Our work provides a pathway toward the scalable fabrication of high-performance AuNP-Gr-FET devices for label-free nucleic acid testing in a realistic clinical setting.
机译:我们已经开发了一种可扩展的制造工艺,用于生产基于金纳米粒子修饰的石墨烯场效应晶体管(AuNP-Gr-FET)的DNA生物传感器,其中单分散的AuNPs是通过物理气相沉积然后进行热退火而形成的。使用优化的双层光刻工艺以四探针配置创建FET,该工艺可生产出化学清洁的器件(经XPS和AFM证实),具有高载流子迁移率(3590 +/- 710 cm2 / Vs)和低意外掺杂(Dirac)电压为9.4 +/- 2.7 V)。 AuNP-Gr-FET很容易用硫醇化探针DNA进行功能化,以产生DNA生物传感器,其检测限为1 nM,并且对非互补DNA具有高特异性。我们的工作为实现可扩展制造的高性能AuNP-Gr-FET器件提供了一条途径,用于在现实的临床环境中进行无标记的核酸测试。

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