Manipulation of Au nanoparticles using an electron probe: electron golf
Nan Jiang

TL;DR
This paper introduces a novel electron beam technique for precisely manipulating individual 20 nm gold nanoparticles on insulating substrates, advancing nanofabrication capabilities.
Contribution
It presents a new nanoscale manipulation method using focused electron beams to control nanoparticle movement via electric fields generated by electron irradiation.
Findings
Controlled displacement of 20 nm Au nanoparticles demonstrated
Electric field mechanism under electron irradiation elucidated
Manipulation parameters like current density and exposure time are effective
Abstract
A tool for manipulation of specific nanoparticles is essential for nanofabrication. This paper describes a new class of nanoscale techniques for manipulating individual nanoparticles on an insulating substrate using a focused electron beam. The controlled displacement of 20 nm Au nanoparticles is demonstrated, along with the extension to other systems, by exploiting the fundamental principles of particle motion under intense electron irradiation, which we elucidate. Excitation and ionization by the focused electron beam within the substrate are shown to produce an electric field on the particle in this new mechanism. The strength and direction of the electric field, and thus the motion of the nanoparticle, can be precisely controlled by the current density, exposure time and position of the electron beam.
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Taxonomy
TopicsAdvanced Electron Microscopy Techniques and Applications · Electron and X-Ray Spectroscopy Techniques · Force Microscopy Techniques and Applications
