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Importance of controlling nanotube density for highly sensitive and reliable biosensors functional in physiological conditions

机译:控制纳米管密度对于在生理条件下起作用的高度敏感和可靠的生物传感器的重要性

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Biosensors utilizing carbon nanotube field-effect transistors have a tremendous potential to serve as the basis for the next generation of diagnostic systems. While nanotubes have been employed in the fabrication of multiple sensors, little attention has previously been paid to how the nanotube density affects the biosensor performance. We conducted a systematic study of the effect of density on the performance of nanotube biosensors and discovered that this parameter is crucial to achieving consistently high performance. We found that devices with lower density offer higher sensitivity in terms of both detection limit and magnitude of response. The low density nanotube devices resulted in a detection limit of 1 pM in an electrolyte buffer containing high levels of electrolytes (ionic concentration ~140 mM, matching the ionic strength of serum and plasma). Further investigation suggested that the enhanced sensitivity arises from the semiconductor-like behavior - strong gate dependence and lower capacitance - of the nanotube network at low density. Finally, we used the density-optimized nanotube biosensors to detect the nucleocapsid (N) protein of the SARS virus and demonstrated improved detection limits under physiological conditions. Our results show that it is critical to carefully tune the nanotube density in order to fabricate sensitive and reliable devices.
机译:利用碳纳米管场效应晶体管的生物传感器具有巨大的潜力,可作为下一代诊断系统的基础。尽管纳米管已用于制造多个传感器,但以前很少注意纳米管的密度如何影响生物传感器的性能。我们对密度对纳米管生物传感器性能的影响进行了系统的研究,发现该参数对于实现始终如一的高性能至关重要。我们发现,密度较低的设备在检测极限和响应幅度方面都具有更高的灵敏度。低密度纳米管装置在含有高水平电解质(离子浓度〜140 mM,与血清和血浆的离子强度匹配)的电解质缓冲液中的检测极限为1 pM。进一步的研究表明,增强的灵敏度来自于低密度纳米管网络的类似半导体的行为-强的栅极依赖性和较低的电容-。最后,我们使用了密度优化的纳米管生物传感器来检测SARS病毒的核衣壳(N)蛋白,并证明了在生理条件下改善的检测限。我们的结果表明,至关重要的是仔细调整纳米管的密度,以制造灵敏而可靠的设备。

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