纳米尺度上的相互作用力:机械臂-物体-表面

Zhengxun Song, Zuobin Wang, Lanjiao Liu, Li Li, V. Koledov, P. Lega, S. V. Gratovsky, D. Kuchin, A. Irzhak
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引用次数: 2

摘要

在纳米尺度上,物体之间的相互作用力对三维纳米模拟的过程有很大的影响。本文研究了纳米物体(ZnO纳米须)对具有形状记忆效应(SME)的复合纳米镊子Ti2NiCu的粘附力。表面相互作用是非常重要的,在捕获和脱离纳米物体基底的两个阶段,以及当物体从捕获中解放出来并固定在新的基底上时。在装有Kleindiek微操作器的扫描电镜上观察了这种相互作用。纳米镊子固定在钨微细丝的尖端。它接近并脱离ZnO纳米晶须。对于纳米镊子的金属表面和覆盖ZnO薄膜的表面,确定了开始出现吸引力的临界距离。
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Interaction Forces on Nanoscale: Manipulator-Object-Surface
The forces of interaction between objects on the nanoscale greatly affect the process of 3D nanomapulation. The work is devoted to an experimental study of the sticking force of nanoobjects (ZnO nanowhiskers) to a micro nanomanipulator (composite nanotweezers Ti2NiCu with shape memory effect (SME). Surface interaction is very important, at the both stages of capture, and detachment from the substrate of the nanoobject, and when the object is freed from capture and fixed to a new substrate. The interaction was observed in a SEM equipped with a Kleindiek micromanipulator. The nanotweezers were fixed on the tip of tungsten microwire. It approached and removed from the ZnO nanowhisker. The critical distance at which the attraction begins to appear was determined for the metal surface of the nanotweezers and for the surface covered with thin ZnO film.
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