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Addressable Nanowire Field-Effect-Transistor Biosensors With Local Backgates

机译:具有局部背栅的可寻址纳米线场效应晶体管生物传感器

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Direct electrical detection of the binding of antibody and antigen of avian influenza virus was demonstrated through a biosensor derived from a double-gate FinFET. A simple detection method was employed in which the charge effect coming from the biomolecules was observed through the threshold voltage $V_{T}$ shift. Due to the presence of a local backgate, the proposed device is individually addressable and the operating voltage is markedly low compared with similar nanowire-type biosensors. Furthermore, its unique structure allows for the channel to be immune to the noise from the biomolecules, which can be problematic for nanogap field-effect-transistor biosensors. The proposed device is complementary metal–oxide–semiconductor compatible and highly reproducible, and monolithic integration with the readout circuits is achievable. Hence, this approach provides a step toward the large-scale development of sensor chips for their potential use in medicine and biotechnology.
机译:通过衍生自双门FinFET的生物传感器证明直接电检测禽流感病毒的抗体和抗原的结合。采用一种简单的检测方法,其中通过阈值电压$ V_ {T} $ shift观察到来自生物分子的电荷效应。由于存在局部背闸,因此与类似的纳米线型生物传感器相比,该器件可单独寻址,并且工作电压明显较低。此外,其独特的结构允许通道不受来自生物分子的噪声的干扰,这对于纳米间隙场效应晶体管生物传感器可能是有问题的。拟议的设备是互补的金属-氧化物-半导体兼容的并且高度可复制的,并且可以与读出电路实现单片集成。因此,这种方法为传感器芯片在医学和生物技术中的潜在应用提供了朝着大规模开发迈出的一步。

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