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Nanofluidics for Single Molecule DNA Sequencing.

机译:用于单分子DNA测序的纳米流体。

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摘要

After a decade of efforts, accurate and affordable DNA sequencing continues to remain an important goal in current research landscape. This thesis starts with a brief overview of the recent updates in the field of DNA sequencing technologies followed by description of the nanofluidics route to single molecule DNA detection. Chapter 2 presents discusses carbon nanotube(CNT) based nanofluidics. The fabrication and DNA sensing measurements of CNT forest membrane devices are presented. Chapter 3 gives the background for functionalization and recognition aspects of reader molecules. Chapter 4 marks the transition to solid state nanopore nanofluidics. The fabrication of Imidazole functionalized nanopores is discussed. The Single Molecule detection results of DNA from Palladium nanopore devices are presented next. Combining chemical recognition to nanopore technology, it has been possible to prolong the duration of single molecule events from the order of a few micro seconds to upto a few milliseconds. Overall, the work presented in this thesis promises longer single molecule detection time in a nanofludic set up and paves way for novel nanopore- tunnel junction devices that combine recognition chemistry, tunneling device and nanopore approach.
机译:经过十多年的努力,准确和负担得起的DNA测序仍然是当前研究领域的重要目标。本文首先简要概述了DNA测序技术领域的最新进展,然后描述了单分子DNA检测的纳米流体方法。第2章介绍了基于碳纳米管(CNT)的纳米流体。介绍了碳纳米管森林膜装置的制造和DNA传感测量。第3章介绍了阅读器分子的功能和识别方面的背景。第4章标志着向固态纳米孔纳米流体的过渡。讨论了咪唑官能化的纳米孔的制备。接下来介绍了钯纳米孔器件中DNA的单分子检测结果。将化学识别与纳米孔技术相结合,可以将单分子事件的持续时间从几微秒的数量级延长到几毫秒。总体而言,本文提出的工作有望在纳米流体中建立更长的单分子检测时间,并为结合识别化学,隧穿设备和纳米孔方法的新型纳米孔-隧道结设备铺平道路。

著录项

  • 作者

    Krishnakumar, Padmini.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Physics General.;Biology Molecular.;Biophysics General.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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