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Detection of Individual Molecules and Ions by Carbon Nanotube-Based Differential Resistive Pulse Sensor

机译:碳纳米管差动电阻脉冲传感器检测单个分子和离子

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This paper presents a new method of sensing single molecules and cations by a carbon nanotube (CNT)-based differential resistive pulse sensing (RPS) technique on a nanofluidic chip. A mathematical model for multichannel RPS systems is developed to evaluate the CNT-based RPS signals. Individual cations, rhodamine B dye molecules, and ssDNAs are detected successfully with high resolution and high signal-to-noise ratio. Differentiating ssDNAs with 15 and 30 nucleotides are achieved. The experimental results also show that translocation of negatively charged ssDNAs through a CNT decreases the electrical resistance of the CNT channel, while translocation of positively charged cations and rhodamine B molecules increases the electrical resistance of the CNT. The CNT-based nanofluidic device developed in this work provides a new avenue for single-molecule/ion detection and offers a potential strategy for DNA sequencing.
机译:本文介绍了通过在纳米流体芯片上通过碳纳米管(CNT)的差分电阻脉冲感测(RPS)技术感测单个分子和阳离子的新方法。 开发了一种用于多声道RPS系统的数学模型来评估基于CNT的RPS信号。 以高分辨率和高信噪比成功检测单个阳离子,罗丹明B染料分子和SSDNA。 达到与15和30个核苷酸的区分SSDNA。 实验结果还表明,通过CNT的带负电的SSDNA的易位降低了CNT通道的电阻,同时正电荷阳离子和罗丹明B分子的易位增加了CNT的电阻。 在本工作中开发的基于CNT的纳米流体装置为单分子/离子检测提供了新的途径,并提供了DNA测序的潜在策略。

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