Abstract
Interfaces of 2D materials with metals are of interest for a large variety of applications, including sensors, batteries, catalysis, electronics, and semi-conductor devices. Transition metal dichalcogenides (TMDs) and specifically MoS2 are some of the most widely studied 2D materials. A detailed understanding of the interactions of metals with 2D TMDs can give useful insights into possible applications for metal-TMD systems. However, the literature focuses mainly on comparing trends in single atom adsorption and studying nanoparticles on MoS2 monolayers.
In this work we aim to increase the understanding of metal-MoS2 interactions and metal nucleation on TMDs. We use density functional theory (DFT) to study the adsorption of small metal clusters with up to four atoms on MoS2 monolayers. Insights gained from this work allow us to understand the initial nucleation of metal thin films on TMDs as well as predict the likely morphology of the thin film as it grows.
In this work we aim to increase the understanding of metal-MoS2 interactions and metal nucleation on TMDs. We use density functional theory (DFT) to study the adsorption of small metal clusters with up to four atoms on MoS2 monolayers. Insights gained from this work allow us to understand the initial nucleation of metal thin films on TMDs as well as predict the likely morphology of the thin film as it grows.
| Original language | English |
|---|---|
| Journal | ECS Meeting Abstracts |
| DOIs | |
| Publication status | Published - 2022 |
Keywords
- Nanoclusters
- Monolayer
- Nucleation
- Materials science
- Substrate (aquarium)
- Adsorption
- Metal
- Nanotechnology
- Density functional theory
- Transition metal
- Chemical physics
- Thin film
- Chemical engineering
- Catalysis
- Computational chemistry
- Physical chemistry
- Chemistry
- Metallurgy
- Geology
- Engineering
- Biochemistry
- Oceanography
- Organic chemistry
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