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Force applied to a single molecule at a single nanogate molecule filter

机译:应用于一个分子在一个力量nanogate分子过滤器

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摘要

We have investigated the origin of molecule filtering system based on a chemical potential barrier produced by thermodynamically driven molecular flow in a nanoscopic space at nanogates. Single molecule tracking experiments prove that the highly localized potential barrier allows for selective manipulation of the target molecule. We propose the presence of a force, a few fN per molecule, to decelerate the molecule's movement at the nanogate, which is comparable to or larger than the force applied by conventional electrophoretic operation. The present force can be tuned by changing the nanogate width at the nanometre level. These findings allow us to propose an accurate design of novel devices for molecular manipulation on an ultra small scale using a very small number of molecules without any external biases.
机译:我们已经调查了分子的起源过滤系统基于化学势障碍产生的热动力驱动分子在纳米空间流动nanogates。证明高度本地化的势垒允许选择性操作的目标分子。几个fN每个分子,分子的减速运动nanogate,媲美或大于常规施加的力的大小电泳操作。通过改变nanogate宽度在调优纳米级别。提出一个准确的新设备的设计分子操纵在一个超小的规模使用一个非常小的分子数任何外部的偏见。

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