Abstract
The increasing demand for sustainable energy solutions necessitates advancements in hydrogen storage technologies. This study investigates the hydrogen adsorption characteristics of graphene and an (8,0) carbon nanotube (CNT) decorated with adatoms of various elements. Using molecular dynamics (MD) simulations and the universal interatomic potential ’PreFerred Potential’ (PFP) implemented in the Matlantis framework, we explore the hydrogen storage capabilities of these doped carbon structures at 77 K. We analyze the adsorption efficiency based on the position of adatoms (top, bridge, and hollow sites) and find that the group II elements, such as calcium and strontium, exhibit significant hydrogen uptake. Additionally, light elements like lithium and sodium demonstrate enhanced gravimetric hydrogen storage due to their low atomic mass. Our findings provide insights into the potential of doped graphene and CNTs for efficient hydrogen storage applications.
| Originalsprache | Englisch |
|---|---|
| Aufsatznummer | 100535 |
| Seitenumfang | 5 |
| Fachzeitschrift | Carbon Trends |
| Jahrgang | 2025 |
| Ausgabenummer | Volume 20, August |
| Frühes Online-Datum | 16 Juni 2025 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - Aug. 2025 |
Bibliographische Notiz
Publisher Copyright:© 2025 The Authors
UN SDGs
Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung
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SDG 9 – Industrie, Innovation und Infrastruktur
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