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Study of DNA properties under controlled conditions using AFM based nano-robotics

机译:使用基于AFM的纳米机器人在可控条件下研究DNA特性

摘要

After much initial controversy over the past 20 years, the mechanism of charge-transfer in DNA is now moving towards a consensus view in the chemistry community that the dominant charge-transfer mechanism appears to be distance-dependent coherent tunnelling through unit-step and weak-distance-dependent thermal hopping through multi-step. Contrary to the consensus in the chemistry society, the problem of whether DNA is conducting or insulating remains to be hotly debated among physics groups due to the disparate experimental results varying from conductor to insulator. The study of DNA electronic properties requires an efficient way to accurately position and individually manipulate DNA molecules. The recent development of Atomic Force Microscopy (AFM) based nano-robotics seems to be a promising solution. In this research, the DNA molecules are positioned onto a pair of electrodes by a nano-robotic tool. The electrical properties of DNA are studied under controlled conditions.
机译:经过20多年的初步争论后,DNA中电荷转移的机理正朝着化学界的共识发展,即主要的电荷转移机理似乎是通过单位步长和弱的距离相关的相干隧穿多步的距离相关热跳变。与化学社会的共识相反,由于导体之间的不同实验结果不同,DNA是导电还是绝缘的问题仍在物理学界之间引起了激烈的争论。对DNA电子特性的研究需要一种有效的方法来精确定位和单独操纵DNA分子。基于原子力显微镜(AFM)的纳米机器人的最新发展似乎是一个有前途的解决方案。在这项研究中,DNA分子通过纳米机器人工具放置在一对电极上。在受控条件下研究了DNA的电学性质。

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