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Graphene-Based Single-Bacterium Resolution Biodevice and DNA Transistor: Interfacing Graphene Derivatives with Nanoscale and Microscale Biocomponents

机译:基于石墨烯的单细菌分辨率生物装置和DNA晶体管:石墨烯衍生物与纳米级和微米级生物组分的接口

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摘要

Establishing "large-contact-area" interfaces of sensitive nanostructures with microbes and mammalian cells will lead to the development of valuable tools and devices for biodiagnostics and biomedicine. Chemically modified graphene (CMG) nanostructures with their microscale area, sensitive electrical properties, and modifiable chemical functionality are excellent candidates for such biodevices at both biocellular and biomolecular scale. Here, we report on the fabrication and functioning of a novel CMG-based (i) single-bacterium biodevice, (ii) label-free DNA sensor, and (iii) bacterial DNA/protein and polyelectrolyte chemical transistor. The bacteria biodevice was highly sensitive with a singlebacterium attachment generating similar to 1400 charge carriers in a p-type CMG. Similarly, single-stranded DNA tethered on graphene hybridizes with its complementary DNA strand to reversibly increase the hole density by 5.61 x 10(12) cm(-2). We further demonstrate (a) a control on the device sensitivity by manipulating surface groups, (b) switching of polarity specificity by changing surface polarity, and (c) a preferential attachment of DNA on thicker CMG surfaces and sharp CMG wrinkles.
机译:建立敏感的纳米结构与微生物和哺乳动物细胞的“大接触区”界面将导致开发用于生物诊断和生物医学的有价值的工具和设备。化学修饰的石墨烯(CMG)纳米结构及其微尺度的面积,灵敏的电性能和可修改的化学功能,对于此类生物器件在生物细胞和生物分子规模上都是极好的候选者。在这里,我们报告基于新型CMG(i)单细菌生物设备,(ii)无标记DNA传感器,以及(iii)细菌DNA /蛋白质和聚电解质化学晶体管的制造和功能。细菌生物设备对单细菌附着高度敏感,该附着会在p型CMG中产生类似于1400个电荷载体。同样,拴在石墨烯上的单链DNA与互补的DNA链杂交,可逆地将孔密度增加5.61 x 10(12)cm(-2)。我们进一步证明(a)通过操纵表面基团来控制设备的灵敏度,(b)通过改变表面极性来切换极性特异性,以及(c)DNA在较厚的CMG表面和尖锐的CMG皱纹上的优先附着。

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