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在区分纳米推进与其他过程时,颗粒跟踪和计算均方根位移的重要性。

Importance of particle tracking and calculating the mean-squared displacement in distinguishing nanopropulsion from other processes.

机构信息

Department of Chemistry, University of Sheffield, Sheffield, UK.

出版信息

Langmuir. 2012 Jul 31;28(30):10997-1006. doi: 10.1021/la301370y. Epub 2012 Jul 12.

Abstract

In this paper we show that processes such as Brownian motion, convection, sedimentation, and bacterial contamination can cause small particles to move through liquids in a fashion which may be mistaken as nanopropulsion. It is shown that particle tracking and subsequent statistical analysis is essential to ascertain if small particles actually propel themselves, or if they are propelled by another process. Specifically we find that it is necessary to calculate the mean-squared displacement of particles at both short and long time intervals, to show that the direction of propulsion changes coincident with rotation of the particle by Brownian motion, as this allows nanopropulsion to be differentiated from Brownian motion, convection and sedimentation. We also find that bacteria can attach themselves to particles and cause them to be propelled. This leads to motion which appears very similar to nanopropulsion and cannot be differentiated using particle tracking and therefore find that carefully designed control experiments must be performed. Finally, we suggest an experimental protocol which can be used to investigate the motion of small objects and prove if they move due to nanopropulsion.

摘要

本文展示了布朗运动、对流、沉降和细菌污染等过程可能导致小颗粒以一种可能被误认为纳米推进的方式在液体中移动。研究表明,颗粒跟踪和随后的统计分析对于确定小颗粒是否真的自行推进,或者它们是否被另一个过程推进是至关重要的。具体来说,我们发现有必要计算颗粒在短时间和长时间间隔内的均方位移,以表明推进的方向与布朗运动引起的颗粒旋转一致,因为这可以将纳米推进与布朗运动、对流和沉降区分开来。我们还发现,细菌可以附着在颗粒上并推动它们前进。这导致的运动与纳米推进非常相似,无法通过颗粒跟踪来区分,因此我们发现必须进行精心设计的对照实验。最后,我们提出了一种实验方案,可以用来研究小物体的运动,并证明它们是否由于纳米推进而移动。

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