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Nanoscale sensor analysis using the immersed molecular electrokinetic finite element method

机译:纳米传感器分析使用沉浸分子动电的有限元方法

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摘要

The concentration and detection of molecular biomarkers remain as a challenge to develop point-of-care diagnostic devices. An electric field induced concentration has been studied for such purposes but with limited success due to limited efficacy. This paper presents a computational study for investigating the molecular concentration and retention efficacy of single nanowire (SNW) and dendritic nanotip (DNT) sensors. Our computational results indicate that compared to a DNT, the SNW sensor produces higher dielectrophoretic (DEP) forces in the vicinity of the terminal end of the tip. Furthermore, the magnitude of the DEP force increases exponentially as the diameter of the SNW is decreased, resulting in a further improved retention efficacy of NPs. However, the SNW sensor's concentration efficacy was not much improved for NPs smaller than 10 nm diameter when the nanowire diameter was reduced from 500 to 50 nm. Compared to the SNW, the DNT sensor showed improved concentration efficacy due to multiple points of electric field concentrations, which retard the exponential decay of the DEP force resulting in a greater widespread region where the DEP force dominates the Brownian motion forces. When oligonucleotides are used as a target particle, the DEP force can be used to elongate oligonucleotides to further enhance the concentration and retention efficacy.
机译:分子的浓度和检测生物标志物仍是一个挑战医疗点诊断设备。场诱导浓度进行了研究这样的目的,但由于有限的成功有限的功效。计算研究调查分子浓度和保留的效果单一的纳米线(SNW)和树突nanotip (DNT)传感器。而DNT, SNW传感器产生更高dielectrophoretic (DEP)附近的部队终端的小费。的大小取决于力增加指数SNW的直径下降,导致进一步的改善保留NPs的效果。传感器的浓度功效并不多改进了NPs小于10纳米直径的时候纳米线直径从500降到了50nm。改善由于多个浓度功效电场集中的点延迟的指数衰减DEP力量导致更广泛的地区部力量支配着布朗运动部队。目标粒子,可用于大力量延长寡核苷酸,进一步增强浓度和保留效果。

著录项

  • 来源
    《Nanoscale》 |2012年第16期|5189-5194|共6页
  • 作者单位

    Department of Materials Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, USA;

    Department of Mechanical Engineering, University of Washington, Seattle, WA, USA;

    Department of Mechanical Engineering, Northwestern University, Evanston, IL, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    Oligonucleotides; Molecular biomarkers; SensorsForce;

    机译:寡核苷酸;分子生物标志物;SensorsForce;

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