Issue 13, 2021

Graphene nanogaps for the directed assembly of single-nanoparticle devices

Abstract

Significant advances in the synthesis of low-dimensional materials with unique and tuneable electrical, optical and magnetic properties has led to an explosion of possibilities for realising hybrid nanomaterial devices with unconventional and desirable characteristics. However, the lack of ability to precisely integrate individual nanoparticles into devices at scale limits their technological application. Here, we report on a graphene nanogap based platform which employs the large electric fields generated around the point-like, atomically sharp nanogap electrodes to capture single nanoparticles from solution at predefined locations. We demonstrate how gold nanoparticles can be trapped and contacted to form single-electron transistors with a large coupling to a buried electrostatic gate. This platform offers a route to the creation of novel low-dimensional devices, nano- and optoelectronic applications, and the study of fundamental transport phenomena.

Graphical abstract: Graphene nanogaps for the directed assembly of single-nanoparticle devices

Supplementary files

Article information

Article type
Paper
Submitted
05 Mar 2021
Accepted
16 Mar 2021
First published
18 Mar 2021
This article is Open Access
Creative Commons BY license

Nanoscale, 2021,13, 6513-6520

Graphene nanogaps for the directed assembly of single-nanoparticle devices

J. J. Cully, J. L. Swett, K. Willick, J. Baugh and J. A. Mol, Nanoscale, 2021, 13, 6513 DOI: 10.1039/D1NR01450A

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