Abstract
Layered materials, such as tungsten dichalcogenides
(TMDs), are being studied for a wide range of applications, due to their unique and varied properties. Specifically, their use as either a support for low dimensional
catalysts or as an ultrathin diffusion barrier in semiconductor devices interconnect structures are particularly relevant. In order to fully realise these possible applications for TMDs, understanding the interaction between metals and the monolayer they are deposited on is of utmost importance. The morphology that arises due
to given metal-substrate combinations determines their
possible applications and thus is a central characteristic. Previous theoretical studies typically focus on the
effects which single metal adatoms, or dopants, have on
a TMDs’ electronic and optical properties, thereby leaving a knowledge gap in terms of thin film nucleation on
TMD monolayers. To address this, we present a density
functional theory (DFT) study of the adsorption of small
Cu clusters on a range of TMD monolayers, namely WS2,
WSe2 , and WTe2. We explore how metal–substrate and
metal–metal interactions contribute to both the stability of these Cu clusters and their morphology, and investigate the role of the chalcogen in these interactions.
We find that single Cu atoms adsorb most strongly to
the adsorption site above the W atom, however as nanocluster size increases, Cu tends to be adsorbed atop the chalcogen atoms in the monolayer to facilitate Cu-Cu
bond formation. We show that Cu-Cu interactions drive
the stability of of the adsorbed Cu nanoclusters, with
a clear preference for 3D structures on all 3 monolayers
studied. Furthermore, significant Cu migration occurs
during 0 K relaxation. This, combined with the small
activation barriers found for Cu migration suggest facile
and dynamic cluster behaviour at finite temperature on
all three monolayers. Finally, we find that Cu clusters
are generally most stable on WTe2 and least stable on
WSe2. This difference however is typically only in the
range of 0.1 eV
Supplementary materials
Title
Supporting Information Document for Structure and Stability of Copper Nanoclusters on Monolayer Tungsten Dichalcogenides
Description
Supporting Information. Includes
- all starting Cu adsorption structures
- all relaxed structures
- full data tables of energies
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