Article ID Journal Published Year Pages File Type
5425971 Surface Science 2006 6 Pages PDF
Abstract

A simple “chimney” method was used to eliminate the voids in an arrangement of quantum dots sized 2 nm on a solid substrate, which resulted in a large well ordered superlattice of area in the order more than 1 μm2. Based on the principle of speeding up the interparticle interaction of nanoparticles to overcome the particle-substrate one, a lateral centripetal force originated from a glass tube acting as a chimney in a simple evaporation device is imposed. This method allows the packing process to be controlled in a mechanical force field, that is, with the same nanogold dispersion different patterns on a substrate-from separate dots to an ordered compact monolayer or even a multilayer structure-could be easily obtained.

Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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