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Field-effect transistor antigen/antibody-TMDs sensors for the detection of COVID-19 samples

机译:用于检测 COVID-19 样本的场效应晶体管抗原/抗体 TMDs 传感器

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We fabricated sensors by modifying the surface of MoS2 and WS2 with COVID-19 antibodies and investigated their characteristics, including stability, reusability, sensitivity, and selectivity. Thiols and disulfanes in antibodies strongly interact with vacant Mo or W sites of MoS2 or WS2, yielding durable devices that are stable for several days in the air or water. More importantly, detachment of the antibodies is suppressed even during the aggressive cleaning process of the devices at pH 3, which allows reusing the same device in several experiments without appreciable loss of sensitivity. Therefore, the nanodevice may be employed in samples of different patients. Further, we found a limit of detection (LOD) of 1 fg ml−1 at room temperature, time responses of 1 second, and selectivity against interferences such as KLH protein or Albumin.
机译:我们制作的传感器通过修改的表面二硫化钼和COVID-19抗体和二硫化钨调查了他们的特点,包括稳定性、可重用性、敏感性和选择性。强烈与空钼或钨网站的互动二硫化钼或二硫化钨,产生持久的设备稳定的空气或水好几天。重要的是,超然的抗体抑制甚至在激进的清洁过程设备的pH值3,它允许在一些实验中重用相同的设备没有明显的敏感性。因此,nanodevice可能采用样品不同的病人。检测极限(LOD) 1 fg毫升−1的房间温度、时间响应1秒,选择性对KLH等干扰蛋白和白蛋白。

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