Related Experiment Video
Updated: May 30, 2026

Synthesis of Substrate-Bound Au Nanowires Via an Active Surface Growth Mechanism
Published on: July 18, 2018
Large array of sub-10-nm single-grain Au nanodots for use in nanotechnology
Nicolas Clément1, Gilles Patriarche, Kacem Smaali
1Institut d'Electronique Microélectronique et Nanotechnologie, CNRS, Univ. of Lille, Avenue Poincaré, 59652, Villeneuve d'Ascq, France. nicolas.clement@iemn.univ-lille1.fr
Abstract:
A uniform array of single-grain Au nanodots, as small as 5-8 nm, can be formed on silicon using e-beam lithography. The as-fabricated nanodots are amorphous, and thermal annealing converts them to pure Au single crystals covered with a thin SiO(2) layer. These findings are based on physical measurements, such as atomic force microscopy (AFM), atomic-resolution scanning transmission electron microscopy, and chemical techniques using energy dispersive X-ray spectroscopy. A self-assembled organic monolayer is grafted on the nanodots and characterized chemically with nanometric lateral resolution. The extended uniform array of nanodots is used as a new test-bed for molecular electronic devices.

