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首页> 外文期刊>ACS applied materials & interfaces >A New Electrolytic Synthesis Method for Few-Layered MoS2 Nanosheets and Their Robust Biointerfacing with Reduced Antibodies
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A New Electrolytic Synthesis Method for Few-Layered MoS2 Nanosheets and Their Robust Biointerfacing with Reduced Antibodies

机译:很少层的MoS2纳米片的新型电解合成方法及其具有还原抗体的稳健生物接口

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摘要

We report an efficient method for the synthesis of few-layered MoS2 nanosheets and demonstrate their application in the label-free detection of the prostate-specific antigen (PSA) cancer marker. As a novel strategy, the electro-dissolution of molybdenum metal sheets in the presence of Na+ and S2- ions led to the formation of Na+ intercalated MoS2. Further exfoliation by ultrasonication yielded the desired formation of few-layered MoS2 nanosheets. After comprehensive characterization, the synthesized MoS2 nanosheets were channeled in a field-effect transistor (FET) microdevice. Chemically reduced anti-PSA antibodies were immobilized on the MoS2 channel above the FET microdevice to construct a specific PSA immunosensor. The antibodies were deliberately reduced to expose the hinge-region disulfide bonds. This approach offered a robust and site-directed immunosensing device through biointerfacing of the sulfhydryl groups (SH) in the reduced antibody with the surface S atoms of MoS2. This device was validated as an effective immunosensor with a low detection limit (10(-5)ng/mL) over a wide linear detection range (10(-5) to 75 ng/mL).
机译:我们报告了几层MoS2纳米片的合成的有效方法,并证明了它们在前列腺特异性抗原(PSA)癌症标志物的无标签检测中的应用。作为一种新的策略,在Na +和S2-离子的存在下钼金属板的电溶解导致形成Na +嵌入的MoS2。通过超声进一步剥离产生所需的几层MoS2纳米片的形成。经过全面表征后,将合成的MoS2纳米片引入场效应晶体管(FET)微型设备中。将化学还原的抗PSA抗体固定在FET微设备上方的MoS2通道上,以构建特定的PSA免疫传感器。故意还原抗体以暴露铰链区二硫键。该方法通过还原抗体中的巯基(SH)与MoS2的表面S原子进行生物接口,提供了一种强大的定点免疫传感设备。该设备被确认为有效的免疫传感器,在宽线性检测范围(10(-5)至75 ng / mL)内具有低检测限(10(-5)ng / mL)。

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